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% 2026
@ARTICLE{gravity26,
  author = {{GRAVITY+ Collaboration} and {:} and {Foschi}, A. and {El Dayem}, K. Abd and {Aimar}, N. and {Berdeu}, A. and {Berger}, J.-P. and {Bourdarot}, G. and {Brandner}, W. and {Cao}, Y. and {Correia}, C. and {Cueves Cardona}, S. and {Davies}, R. and {Defr{\`e}re}, D. and {Delplancke-Str{\"o}bele}, F. and {Drescher}, A. and {Eisenhauer}, F. and {Esteras Otal}, L. and {Fabricius}, M. and {Feuchtgruber}, H. and {Flesch}, S. and {F{\"o}rster Schreiber}, N.~M. and {Fournier}, Q. and {Garcia}, P. and {Garcia Lopez}, R. and {Genzel}, R. and {Gillessen}, S. and {Gont{\'e}}, F. and {Haubois}, X. and {H{\"o}nig}, S.~F. and {Houll{\'e}}, M. and {Joharle}, S. and {Kammerer}, J. and {Kaufer}, A. and {Kervella}, P. and {Kreidberg}, L. and {Labadie}, L. and {Lacour}, S. and {Lai}, O. and {Laugier}, R. and {Le Bouquin}, J.-B. and {Leftley}, J. and {Li}, R. and {Lopez}, B. and {Lutz}, D. and {Mang}, F. and {M{\'e}rand}, A. and {Millour}, F. and {Montarg{\`e}s}, M. and {Moruj{\~a}o}, N. and {Nowacki}, H. and {Nowak}, M. and {Osorno}, J. and {Ott}, T. and {Pappert}, S. and {Paladini}, C. and {Paumard}, T. and {Perraut}, K. and {Perrin}, G. and {Petrov}, R. and {Pourr{\'e}}, N. and {Rabien}, S. and {Ribeiro}, D.~C. and {Robbe-Dubois}, S. and {Sadun Bordoni}, M. and {Sanchez-Bermudez}, J. and {Sauter}, J. and {Scigliuto}, J. and {Shangguan}, J. and {Shimizu}, T.~T. and {Soulez}, F. and {Straubmeier}, C. and {Sturm}, E. and {Subroweit}, M. and {Sykes}, C. and {Tacconi}, L.~J. and {Th{\'e}venet}, P. and {Urso}, I. and {Vincent}, F.~H. and {Woillez}, J. and {Zins}, G.},
  title = {Improving constraints on the Yukawa correction at the Galactic Center with multiple stellar orbits},
  journal = {arXiv e-prints},
  year = {2026},
  month = {sep},
  eid = {arXiv:2609.07693},
  pages = {arXiv:2609.07693},
  doi = {10.48550/arXiv.2609.07693},
  eprint = {2609.07693},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.GA},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2026arXiv260907693G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {Astrophysics of Galaxies, General Relativity and Quantum Cosmology},
  pdf = {PEER_REVIEWED_PAPERS/56_Gravity26_YukawaGalacticCenter_2609.07693.pdf}
}

@ARTICLE{eldayem26,
  author = {{El Dayem}, K. Abd and {Abuter}, R. and {Aimar}, N. and {Amaro-Seoane}, P. and {Berdeu}, A. and {Berger}, J.-P. and {Bourdarot}, G. and {Brandner}, W. and {Burkert}, A. and {Calderon}, D. and {Correia}, C. and {Cuadra}, J. and {Davies}, R. and {Defrere}, D. and {Delit}, L. and {Drescher}, A. and {Eisenhauer}, F. and {Esteras Otal}, L. and {Fabricius}, M. and {Feuchtgruber}, H. and {Foerster Schreiber}, N.~M. and {Foschi}, A. and {Garcia}, P. and {Garcia Lopez}, R. and {Generozov}, A. and {Genzel}, R. and {Gillessen}, S. and {Gonte}, F. and {Haubois}, X. and {Hoenig}, S.~F. and {Houlle}, M. and {Joharle}, S. and {Kaufer}, A. and {Kammerer}, J. and {Kervella}, P. and {Kolb}, J. and {Kreidberg}, L. and {Labadie}, L. and {Lacour}, S. and {Lai}, O. and {Laugier}, R. and {Le Bouquin}, J.-B. and {Leftley}, J. and {Lopez}, B. and {Lutz}, D. and {Mang}, F. and {Merand}, A. and {Millour}, F. and {Montarges}, M. and {Morujao}, N. and {Nowacki}, H. and {Nowak}, M. and {Oberti}, S. and {Osorno}, J. and {Ott}, T. and {Paumard}, T. and {Paladini}, C. and {Perets}, H.~B. and {Perraut}, K. and {Perrin}, G. and {Petrov}, R. and {Petrucci}, P.~O. and {Piran}, T. and {Pourre}, N. and {Rabien}, S. and {Ribeiro}, D.~C. and {Robbe-Dubois}, S. and {Sadun Bordoni}, M. and {Sanchez Bermudez}, J. and {Santos}, D. and {Sari}, R. and {Sauter}, J. and {Scheithauer}, S. and {Scigliuto}, J. and {Shangguan}, J. and {Shimizu}, T.~T. and {Soulez}, F. and {Stadler}, J. and {Straubmeier}, C. and {Sturm}, E. and {Subroweit}, M. and {Sykes}, C. and {Tacconi}, L.~J. and {Thevenet}, P. and {Urso}, I. and {Vincent}, F. and {Woillez}, J. and {Zins}, G.},
  title = {Discovery of a star sensitive to the spin of Sgr A*},
  journal = {arXiv e-prints},
  year = {2026},
  month = {jul},
  eid = {arXiv:2607.12664},
  pages = {arXiv:2607.12664},
  doi = {10.48550/arXiv.2607.12664},
  eprint = {2607.12664},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.GA},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2026arXiv260712664E},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {Astrophysics of Galaxies, General Relativity and Quantum Cosmology},
  pdf = {PEER_REVIEWED_PAPERS/57_ElDayem26_StarSensitiveSgrAstar_2607.12664.pdf}
}

@ARTICLE{jouve26,
  author = {{Jouve}, Pierre and {Fusco}, Thierry and {Correia}, Carlos M. and {Taissir Heritier}, C{\'e}dric and {Sauvage}, Jean-Fran{\c{c}}ois and {Neichel}, Benoit},
  title = {Estimation of the laser guide star uplink tip-tilt using aperture size diversity},
  journal = {arXiv e-prints},
  year = {2026},
  month = {jul},
  eid = {arXiv:2607.12494},
  pages = {arXiv:2607.12494},
  doi = {10.48550/arXiv.2607.12494},
  eprint = {2607.12494},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2026arXiv260712494J},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {Instrumentation and Methods for Astrophysics},
  pdf = {PEER_REVIEWED_PAPERS/58_Jouve26_LGSuplinkTipTilt_2607.12494.pdf}
}

@ARTICLE{trevascus26,
  author = {{Trevascus}, David and {Brandner}, Wolfgang and {Balsalobre-Ruza}, Olga and {Lacour}, Sylvestre and {El Dayem}, Karim Abd and {Aimar}, Nicolas and {Berdeu}, Anthony and {Berger}, Jean-Philppe and {Bourdarot}, Guillaume and {Christiaens}, Valentin and {Correia}, Carlos and {Davies}, Richard and {Defr{\`e}re}, Denis and {Drescher}, Antonia and {Eckart}, Andreas and {Eisenhauer}, Frank and {Fabricius}, Maximilian and {Feuchtgruber}, Helmut and {Flesch}, Simon and {F{\"o}rster Schreiber}, Natascha M. and {Foschi}, Arianna and {Fournier}, Quentin and {Garcia}, Paulo and {Garcia Lopez}, Rebeca and {Genzel}, Reinhard and {Gillessen}, Stefan and {Hammond}, Iain and {H{\"o}nig}, Sebastian F. and {Houll{\'e}}, Mathias and {Joharle}, Simran and {Kervella}, Pierre and {Kreidberg}, Laura and {Labadie}, Lucas and {Lai}, Olivier and {Laugier}, Romain and {Le Bouquin}, Jean-Baptiste and {Leftley}, James and {Li}, Ruancun and {Lopez}, Bruno and {Lutz}, Dieter and {Marleau}, Gabriel-Dominique and {Mang}, Felix and {M{\'e}rand}, Antoine and {Millour}, Florentin and {Montarg{\`e}s}, Miguel and {Moruj{\~a}o}, Nuno and {Nowacki}, Hugo and {Nowak}, Mathias and {Osorno}, Juan and {Ott}, Thomas and {Pappert}, Sarah and {Paumard}, Thibaut and {Perraut}, Karine and {Perrin}, Guy and {Petrov}, Romain and {Petrucci}, Pierre-Olivier and {Pourr{\'e}}, Nicolas and {Rabien}, Sebastian and {Ribeiro}, Diogo C. and {Robbe-Dubois}, Sylvie and {Sadun Bordoni}, Matteo and {S{\'a}nchez Berm{\'u}dez}, Joel and {Santos}, Daryl and {Sauter}, Jonas and {Scigliuto}, Jules and {Shangguan}, Jinyi and {Shimizu}, Taro T. and {Soulez}, Ferr{\'e}ol and {Straubmeier}, Christian and {Sturm}, Eckhard and {Subroweit}, Matthias and {Sykes}, Calvin and {Tacconi}, Linda and {Th{\'e}venet}, Paloma and {Urso}, Irene and {Vincent}, Fr{\'e}d{\'e}ric and {Woillez}, Julien and {the GRAVITY+ Collaboration}},
  title = {Using VLTI/GRAVITY+ to determine the identity of a third planet candidate in the PDS 70 system},
  journal = {arXiv e-prints},
  year = {2026},
  month = {jun},
  eid = {arXiv:2606.26249},
  pages = {arXiv:2606.26249},
  doi = {10.48550/arXiv.2606.26249},
  eprint = {2606.26249},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.EP},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2026arXiv260626249T},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {Earth and Planetary Astrophysics},
  pdf = {PEER_REVIEWED_PAPERS/59_Trevascus26_PDS70planetCandidate_2606.26249.pdf}
}

@ARTICLE{gravity26a,
  author = {{Gravity+ Collaboration} and {Abuter}, R. and {Allouche}, F. and {Bailet}, C. and {Benisty}, M. and {Berdeu}, A. and {Berger}, J.-P. and {Berio}, P. and {Bigioli}, A. and {Blanchard}, C. and {Boebion}, O. and {Bonnet}, H. and {Bourdarot}, G. and {Bourget}, P. and {Brandner}, W. and {Brul{\'e}}, J. and {Burgos}, P. and {Carbillet}, M. and {Correia}, C. and {Courtney-Barrer}, B. and {Curaba}, S. and {Davies}, R. and {Defr{\`e}re}, D. and {Delboulb{\'e}}, A. and {Delplancke}, F. and {Dembet}, R. and {Drescher}, A. and {Dubost}, N. and {Eckart}, A. and {{\'E}douard}, C. and {Eisenhauer}, F. and {Esteras Otal}, L. and {Fabricius}, M. and {Feuchtgruber}, H. and {F{\'e}dou}, P. and {Finger}, G. and {Schreiber}, N.~M. F{\"o}rster and {Frahm}, R. and {Garcia}, E. and {Garcia}, P. and {Lopez}, R. Garcia and {Genzel}, R. and {Gil}, J.~P. and {Gillessen}, S. and {Gomes}, T. and {Gont{\'e}}, F. and {Gopinath}, V. and {Gouvret}, C. and {Graf}, J. and {Guajardo}, P. and {Guieu}, S. and {Hackenberg}, W. and {Hartl}, M. and {Haubois}, X. and {Hau{\ss}mann}, F. and {Henning}, T. and {Hibon}, P. and {H{\"o}nig}, S. and {Horrobin}, M. and {Houll{\'e}}, M. and {Hubin}, N. and {Taieb}, I. Ibn and {Jochum}, L. and {Jocou}, L. and {Jost}, A. and {Kammerer}, J. and {Karl}, L. and {Kaufer}, A. and {Kern}, P. and {Kervella}, P. and {Kolb}, J. and {Korhonen}, H. and {Kreidberg}, L. and {Krempl}, P. and {Lacour}, S. and {Lagarde}, S. and {Lai}, O. and {Lapeyr{\`e}re}, V. and {Laugier}, R. and {Leal}, V. and {Le Bouquin}, J.-B. and {Leftley}, J. and {L{\'e}na}, P. and {Lopez}, B. and {Lutz}, D. and {Magnard}, Y. and {Mang}, F. and {Marcotto}, A. and {Maurel}, D. and {M{\'e}rand}, A. and {Millour}, F. and {Montarges}, M. and {More}, N. and {Moruj{\~a}o}, N. and {Moulin}, T. and {Nowacki}, H. and {Nowak}, M. and {Oberti}, S. and {Ott}, T. and {Pallanca}, L. and {Patru}, F. and {Paumard}, T. and {Perraut}, K. and {Perrin}, G. and {Petrucci}, P.~O. and {Petrov}, R. and {Pfuhl}, O. and {Pourr{\'e}}, N. and {Rabien}, S. and {Rau}, C. and {Riquelme}, M. and {Robbe-Dubois}, S. and {Rochat}, S. and {Salman}, M. and {S{\'a}nchez-Berm{\'u}dez}, J. and {Schubert}, J. and {Scigliuto}, J. and {Shchekaturov}, P. and {Schuhler}, N. and {Shangguan}, J. and {Shimizu}, T. and {Scheithauer}, S. and {Soenke}, C. and {Soulez}, F. and {Stadler}, E. and {Stadler}, J. and {Straubmeier}, C. and {Sturm}, E. and {Subroweit}, M. and {Sykes}, C. and {Tacconi}, L.~J. and {Tristram}, K.~R.~W. and {Uysal}, S. and {von Fellenberg}, S. and {Widmann}, F. and {Wieprecht}, E. and {Wiezorrek}, E. and {Woillez}, J. and {Yazici}, S. and {Zins}, G.},
  title = {First light for the GRAVITY+ Adaptive Optics: Extreme adaptive optics for the Very Large Telescope Interferometer},
  journal = {\aap},
  year = {2026},
  month = {mar},
  volume = {707},
  eid = {A115},
  pages = {A115},
  doi = {10.1051/0004-6361/202555666},
  eprint = {2509.21431},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2026A&A...707A.115G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {instrumentation: adaptive optics, instrumentation: interferometers, planets and satellites: atmospheres, protoplanetary disks, Magellanic Clouds, quasars: supermassive black holes, Instrumentation and Methods for Astrophysics},
  pdf = {PEER_REVIEWED_PAPERS/54_Boudarot25_GPLUS_Adaptive_Optics_FirstLight_Draft_v1p0.pdf}
}

@ARTICLE{machadosalgueiro26,
  author = {{Machado Salgueiro}, Rafael. and {Correia}, Carlos M. and {Neichel}, Benoit and {Bouchez}, Antonin and {Wizinowich}, Peter and {Surendran}, Avinash and {Service}, Max and {Fusco}, Thierry and {H{\'e}ritier}, C{\'e}dric Ta{\"\i}ssir and {Jouve}, Pierre},
  title = {Slow focus sensor for the Keck I laser guide star adaptive optics system using focal plane wavefront sensing},
  journal = {\aap},
  year = {2026},
  month = {mar},
  volume = {707},
  eid = {A263},
  pages = {A263},
  doi = {10.1051/0004-6361/202557464},
  eprint = {2602.15746},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2026A&A...707A.263M},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {instrumentation: adaptive optics, instrumentation: high angular resolution, Instrumentation and Methods for Astrophysics},
  pdf = {PEER_REVIEWED_PAPERS/60_MachadoSalgueiro26_SlowFocusSensorKeck_2602.15746.pdf}
}

@ARTICLE{gravity26b,
  author = {{Gravity+ Collaboration} and {Abd El Dayem}, K. and {Aimar}, N. and {Berdeu}, A. and {Berger}, J.-P. and {Bourdarot}, G. and {Bourget}, P. and {Brandner}, W. and {Cao}, Y. and {Correia}, C. and {Cuevas Cardona}, S. and {Davies}, R. and {Defr{\`e}re}, D. and {Drescher}, A. and {Eckart}, A. and {Eisenhauer}, F. and {Fabricius}, M. and {Farah}, A. and {Feuchtgruber}, H. and {F{\"o}rster Schreiber}, N.~M. and {Foschi}, A. and {Garcia}, P. and {Garcia Lopez}, R. and {Genzel}, R. and {Gillessen}, S. and {Gomes}, T. and {Gont{\'e}}, F. and {Gopinath}, V. and {Graf}, J. and {Hartl}, M. and {Haubois}, X. and {Hau{\ss}mann}, F. and {Ho}, L.~C. and {H{\"o}nig}, S. and {Houll{\'e}}, M. and {Joharle}, S. and {Keiman}, C. and {Kervella}, P. and {Kolb}, J. and {Kreidberg}, L. and {Labdon}, A. and {Lacour}, S. and {Lai}, O. and {Lai}, S. and {Laugier}, R. and {Le Bouquin}, J.-B. and {Leftley}, J. and {Li}, R. and {Lopez}, B. and {Lutz}, D. and {Mang}, F. and {M{\'e}rand}, A. and {Millour}, F. and {Montarg{\`e}s}, M. and {More}, N. and {Moruj{\~a}o}, N. and {Nowacki}, H. and {Nowak}, M. and {Oberti}, S. and {Onken}, C. and {Osorno}, J. and {Ott}, T. and {Paumard}, T. and {Perraut}, K. and {Perrin}, G. and {Petrov}, R. and {Petrucci}, P.-O. and {Pourr{\'e}}, N. and {Rabien}, S. and {Rau}, C. and {Ribeiro}, D.~C. and {Robbe-Dubois}, S. and {Sadun Bordoni}, M. and {Salman}, M. and {Sanchez-Bermudez}, J. and {Santos}, D. and {Sauter}, J. and {Scialpi}, M. and {Scigliuto}, J. and {Shangguan}, J. and {Shchekaturov}, P. and {Shimizu}, T. and {Soulez}, F. and {Straubmeier}, C. and {Sturm}, E. and {Subroweit}, M. and {Sykes}, C. and {Tacconi}, L.~J. and {{\"U}bler}, H. and {Ulbricht}, G. and {Vincent}, F. and {Webster}, R. and {Wieprecht}, E. and {Woillez}, J. and {Wolf}, C.},
  title = {Spatially resolved broad-line region in a quasar at z = 4: Dynamical black hole mass and prominent outflow},
  journal = {\aap},
  year = {2026},
  month = {feb},
  volume = {706},
  eid = {A99},
  pages = {A99},
  doi = {10.1051/0004-6361/202557285},
  eprint = {2509.13911},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.GA},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2026A&A...706A..99G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {galaxies: active, quasars: emission lines, quasars: supermassive black holes, infrared: galaxies, quasars: individual: SMSS J052915.80-435152.0, Astrophysics of Galaxies},
  pdf = {PEER_REVIEWED_PAPERS/61_Gravity26_QuasarBLR_2509.13911.pdf}
}

@ARTICLE{kral26,
  author = {{Kral}, Q. and {Wang}, J. and {Kammerer}, J. and {Lacour}, S. and {Malin}, M. and {Winterhalder}, T. and {Charnay}, B. and {Perrot}, C. and {Huet}, P. and {Abuter}, R. and {Amorim}, A. and {Balmer}, W.~O. and {Benisty}, M. and {Berger}, J.-P. and {Beust}, H. and {Blunt}, S. and {Boccaletti}, A. and {Bonnefoy}, M. and {Bonnet}, H. and {Bordoni}, M.~S. and {Bourdarot}, G. and {Brandner}, W. and {Cantalloube}, F. and {Caselli}, P. and {Chauvin}, G. and {Chavez}, A. and {Chomez}, A. and {Choquet}, E. and {Christiaens}, V. and {Cl{\'e}net}, Y. and {Coud{\'e} du Foresto}, V. and {Cridland}, A. and {Davies}, R. and {Dembet}, R. and {Dexter}, J. and {Drescher}, A. and {Duvert}, G. and {Eckart}, A. and {Eisenhauer}, F. and {F{\"o}rster Schreiber}, N.~M. and {Garcia}, P. and {Garcia Lopez}, R. and {Gardner}, T. and {Gendron}, E. and {Genzel}, R. and {Gillessen}, S. and {Girard}, J.~H. and {Grant}, S. and {Haubois}, X. and {Henning}, Th. and {Hinkley}, S. and {Hippler}, S. and {Houll{\'e}}, M. and {Hubert}, Z. and {Jocou}, L. and {Keppler}, M. and {Kervella}, P. and {Kreidberg}, L. and {Kurtovic}, N.~T. and {Lagrange}, A.-M. and {Lapeyr{\`e}re}, V. and {Le Bouquin}, J.-B. and {Lutz}, D. and {Maire}, A.-L. and {Mang}, F. and {Marleau}, G.-D. and {M{\'e}rand}, A. and {Molli{\`e}re}, P. and {Monnier}, J.~D. and {Mordasini}, C. and {Mouillet}, D. and {Nasedkin}, E. and {Nowak}, M. and {Ott}, T. and {Otten}, G.~P.~P.~L. and {Paladini}, C. and {Paumard}, T. and {Perraut}, K. and {Perrin}, G. and {Pfuhl}, O. and {Pourr{\'e}}, N. and {Pueyo}, L. and {Ribeiro}, D.~C. and {Rickman}, E. and {Rustamkulov}, Z. and {Shangguan}, J. and {Shimizu}, T. and {Sing}, D. and {Stadler}, J. and {Stolker}, T. and {Straub}, O. and {Straubmeier}, C. and {Sturm}, E. and {Tacconi}, L.~J. and {Vigan}, A. and {Vincent}, F. and {von Fellenberg}, S.~D. and {Widmann}, F. and {Woillez}, J. and {Yazici}, S. and {the GRAVITY Collaboration} and {Abd El Dayem}, K. and {Aimar}, N. and {Berdeu}, A. and {Correia}, C. and {Defr{\`e}re}, D. and {Fabricius}, M. and {Feuchtgruber}, H. and {Foschi}, A. and {H{\"o}nig}, S.~F. and {Joharle}, S. and {Laugier}, R. and {Lai}, O. and {Leftley}, J. and {Lopez}, B. and {Millour}, F. and {Montarg{\`e}s}, M. and {Moruj{\~a}o}, N. and {Nowacki}, H. and {Osorno}, J. and {Petrov}, R. and {Petrucci}, P.~O. and {Rabien}, S. and {Robbe-Dubois}, S. and {Sadun Bordoni}, M. and {S{\'a}nchez Berm{\'u}dez}, J. and {Santos}, D. and {Sauter}, J. and {Scigliuto}, J. and {Soulez}, F. and {Subroweit}, M. and {Sykes}, C.},
  title = {Exomoon search with VLTI/GRAVITY around the substellar companion HD 206893 B},
  journal = {\aap},
  year = {2026},
  month = {jan},
  volume = {705},
  eid = {A217},
  pages = {A217},
  doi = {10.1051/0004-6361/202557127},
  eprint = {2511.20091},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.EP},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2026A&A...705A.217K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {instrumentation: interferometers, techniques: interferometric, astrometry, planets and satellites: detection, Earth and Planetary Astrophysics, Solar and Stellar Astrophysics},
  pdf = {PEER_REVIEWED_PAPERS/62_Kral26_ExomoonSearch_2511.20091.pdf}
}

% 2025
@ARTICLE{correia25,
  author = {{Correia}, Carlos M. and {Bond}, Charlotte Z. and {Aveiro}, Jo{\~a}o and {Leroux}, Fran{\c{c}}ois and {Ta{\"\i}ssir Heritier}, C{\'e}dric and {V{\'e}rinaud}, Christophe},
  title = {Super-resolution wavefront reconstruction in adaptive-optics with pyramid sensors},
  journal = {arXiv e-prints},
  year = {2025},
  month = {dec},
  eid = {arXiv:2512.17469},
  pages = {arXiv:2512.17469},
  doi = {10.48550/arXiv.2512.17469},
  eprint = {2512.17469},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2025arXiv251217469C},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {Instrumentation and Methods for Astrophysics},
  pdf = {PEER_REVIEWED_PAPERS/55_Correia25_super-resolution wavefront reconstruction (Correia et al.).pdf}
}

@ARTICLE{correia25a,
  author = {{Correia}, Carlos M. and {Jouve}, Pierre and {Cranney}, Jesse and {Agapito}, Guido and {Heritier}, C{\'e}dric Ta{\"\i}ssir},
  title = {Super-resolution-enabled atmospheric tomography for astronomical multi-wavefront-sensor adaptive-optics systems},
  journal = {Experimental Astronomy},
  year = {2025},
  month = {nov},
  volume = {60},
  number = {3},
  eid = {26},
  pages = {26},
  doi = {10.1007/s10686-025-10021-z},
  eprint = {2512.17430},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2025ExA....60...26C},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {Adaptive-optics, Tomography, Super-resolution, Instrumentation and Methods for Astrophysics},
  pdf = {PEER_REVIEWED_PAPERS/63_Correia25_SuperResolutionAtmosphericTomography_2512.17430.pdf}
}

% 2024
@ARTICLE{feldt24,
  author = {{Feldt}, Markus and {Bertram}, Thomas and {Correia}, Carlos and {Absil}, Olivier and {C{\'a}rdenas V{\'a}zquez}, M. Concepci{\'o}n and {Coppejans}, Hugo and {Kulas}, Martin and {Obereder}, Andreas and {Orban de Xivry}, Gilles and {Scheithauer}, Silvia and {Steuer}, Horst},
  title = {High strehl and high contrast for the ELT instrument METIS: Final design, implementation, and predicted performance of the single-conjugate adaptive optics system},
  journal = {Experimental Astronomy},
  year = {2024},
  month = {dec},
  volume = {58},
  number = {3},
  eid = {20},
  pages = {20},
  doi = {10.1007/s10686-024-09968-2},
  eprint = {2411.17341},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2024ExA....58...20F},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {METIS, ELT, AO, SCAO, RTC, Astrophysics - Instrumentation and Methods for Astrophysics, Physics - Optics},
  pdf = {PEER_REVIEWED_PAPERS/50_Feldt24_METIS_SCAO.pdf}
}

@ARTICLE{gomes24,
  author = {{Gomes}, Tiago and {Correia}, Carlos M. and {Bardou}, Lisa and {Cetre}, Sylvain and {Kolb}, Johann and {Kulcs{\'a}r}, Caroline and {Leroux}, Fran{\c{c}}ois and {Morris}, Timothy and {Moruj{\~a}o}, Nuno and {Neichel}, Beno{\^\i}t and {Beuzit}, Jean-Luc and {Garcia}, Paulo},
  title = {Adaptive optics telemetry standard. Design and specification of a novel data exchange format},
  journal = {\aap},
  year = {2024},
  month = {jun},
  volume = {686},
  eid = {A7},
  pages = {A7},
  doi = {10.1051/0004-6361/202348486},
  eprint = {2312.08300},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2024A&A...686A...7G},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {atmospheric effects, instrumentation: adaptive optics, instrumentation: detectors, instrumentation: high angular resolution, instrumentation: miscellaneous, astronomical databases: miscellaneous, Astrophysics - Instrumentation and Methods for Astrophysics},
  pdf = {PEER_REVIEWED_PAPERS/53_Gomes24_AOT_adaptiveOpticsTelemetryFormat_aa48486-23.pdf}
}

@ARTICLE{verinaud24,
  author = {{V{\'e}rinaud}, Christophe and {Correia}, Carlos},
  title = {Eigenbases for a force-constrained position control of adaptive shell mirrors},
  journal = {\aap},
  year = {2024},
  month = {jan},
  volume = {681},
  eid = {A102},
  pages = {A102},
  doi = {10.1051/0004-6361/202346902},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2024A&A...681A.102V},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {instrumentation: adaptive optics, telescopes, methods: analytical},
  pdf = {PEER_REVIEWED_PAPERS/51_Verinaud24_EigenbasesForceControl_aa46902-23.pdf}
}

% 2023
@ARTICLE{conod23,
  author = {{Conod}, Uriel and {Jackson}, Kate and {Turri}, Paolo and {Chapman}, Scott and {Lardi{\`e}re}, Olivier and {Lamb}, Masen and {Correia}, Carlos and {Sivo}, Gaetano and {Sivanandam}, Suresh and {V{\'e}ran}, Jean-Pierre},
  title = {The Adaptive Optics System for the Gemini Infrared Multi-Object Spectrograph: Performance Modeling},
  journal = {\pasp},
  year = {2023},
  month = {oct},
  volume = {135},
  number = {1052},
  eid = {105001},
  pages = {105001},
  doi = {10.1088/1538-3873/acf61c},
  eprint = {2310.15338},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2023PASP..135j5001C},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {Astronomical instrumentation, Astronomical simulations, Telescopes, 799, 1857, 1689, Astrophysics - Instrumentation and Methods for Astrophysics},
  pdf = {PEER_REVIEWED_PAPERS/49_Conod23_AOforGIRMOS_2310.15338.pdf}
}

@ARTICLE{morujao23,
  author = {{Moruj{\~a}o}, Nuno and {Correia}, Carlos and {Andrade}, Paulo and {Woillez}, Julien and {Garcia}, Paulo},
  title = {Integrated turbulence parameters' estimation from NAOMI adaptive optics telemetry data},
  journal = {\aap},
  year = {2023},
  month = {oct},
  volume = {678},
  eid = {A193},
  pages = {A193},
  doi = {10.1051/0004-6361/202346952},
  eprint = {2307.15178},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2023A&A...678A.193M},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {instrumentation: adaptive optics, instrumentation: high angular resolution, turbulence, Astrophysics - Instrumentation and Methods for Astrophysics},
  pdf = {PEER_REVIEWED_PAPERS/48_Morujao23_AsmosfericProfiles_aa46952-23.pdf}
}


% 2022
@ARTICLE{padovani22,
  author = {{Padovani}, P. and {Cirasuolo}, M. and {van der Burg}, R. and {Cantalloube}, F. and {George}, E. and {Kasper}, M. and {Leschinski}, K. and {Martins}, C. and {Milli}, J. and {M{\"o}hler}, S. and {Neeser}, M. and {Neichel}, B. and {Otarola}, A. and {S{\'a}nchez-Janssen}, R. and {Serra}, B. and {Smette}, A. and {Valenti}, E. and {Verinaud}, C. and {Vernet}, J. and {Absil}, O. and {Agapito}, G. and {Andersen}, M. and {Arcidiacono}, C. and {Arko}, M. and {Baudoz}, P. and {Beltramo-Martin}, O. and {Biancalani}, E. and {Bierwirth}, T. and {Burtscher}, L. and {Carl{\`a}}, G. and {Castro-Almaz{\'a}n}, J.~A. and {Cheffot}, A.-L. and {Coccato}, L. and {Correia}, C. and {Fetick}, R. and {Fiorentino}, G. and {Fusco}, T. and {Garc{\'\i}a-Lorenzo}, B. and {Gentile Fusillo}, N. and {Gonzalez}, O. and {Grazian}, A. and {Gullieuszik}, M. and {Hainaut}, O. and {Ivanov}, V. and {Kaasinen}, M. and {Kaddad}, D. and {Kami{\'n}ski}, T. and {Kausch}, W. and {Kerber}, F. and {Kimeswenger}, S. and {Kokotanekova}, R. and {Kuznetsov}, A. and {Lau}, A. and {Le Louarn}, M. and {Lemmel}, F. and {Liske}, J. and {Lo Curto}, G. and {Lucsanyi}, D. and {Lundin}, L. and {Noll}, S. and {Oberti}, S. and {Osborn}, J. and {Masciadri}, E. and {Milakovi{\'c}}, D. and {Murphy}, M.~T. and {Pedichini}, F. and {Pereira Santaella}, M. and {Piazzesi}, R. and {Piqueras L{\'o}pez}, J. and {Plantet}, C. and {Prod'homme}, T. and {Przybilla}, N. and {Puech}, M. and {Reid}, D.~T. and {Reiners}, A. and {Rijnenberg}, R. and {Rodrigues}, M. and {Rossi}, F. and {Routledge}, L. and {Smit}, H. and {Tecza}, M. and {Thatte}, N. and {van Boekel}, R. and {Verma}, A. and {Vigan}, A.},
  title = {The ESO's Extremely Large Telescope Working Groups},
  journal = {The Messenger},
  year = {2022},
  month = {dec},
  volume = {189},
  pages = {23-30},
  doi = {10.18727/0722-6691/5286},
  eprint = {2302.14375},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2022Msngr.189...23P},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {Astrophysics - Instrumentation and Methods for Astrophysics},
  pdf = {PEER_REVIEWED_PAPERS/64_Padovani22_ELTWorkingGroups_2302.14375.pdf}
}

@ARTICLE{oberti22,
  author = {{Oberti}, Sylvain and {Correia}, Carlos and {Fusco}, Thierry and {Neichel}, Benoit and {Guiraud}, Pierre},
  title = {Super-resolution wavefront reconstruction},
  journal = {\aap},
  year = {2022},
  month = {nov},
  volume = {667},
  eid = {A48},
  pages = {A48},
  doi = {10.1051/0004-6361/202243954},
  eprint = {2208.12052},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2022A&A...667A..48O},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {techniques: high angular resolution, instrumentation: adaptive optics, instrumentation: high angular resolution, turbulence, atmospheric effects, techniques: image processing, Astrophysics - Instrumentation and Methods for Astrophysics, Physics - Atmospheric and Oceanic Physics, Physics - Instrumentation and Detectors, Physics - Optics},
  pdf = {PEER_REVIEWED_PAPERS/47_Oberti22_SuperResolution_aa43954-22.pdf}
}

@ARTICLE{schatz22,
  author = {{Schatz}, Lauren and {Codona}, Johanan and {Long}, Joseph D. and {Males}, Jared R. and {Pullen}, Weslin and {Lumbres}, Jennifer and {Van Gorkom}, Kyle and {Chambouleyron}, Vincent and {Close}, Laird M. and {Correia}, Carlos and {Fauvarque}, Olivier and {Fusco}, Thierry and {Guyon}, Olivier and {Hart}, Michael and {Janin-Potiron}, Pierre and {Johnson}, Robert and {Jovanovic}, Nemanja and {Mateen}, Mala and {Sauvage}, Jean-Fran{\c{c}}ois and {Neichel}, Benoit},
  title = {Three-sided pyramid wavefront sensor, part II: preliminary demonstration on the new comprehensive adaptive optics and coronagraph test instrument testbed},
  journal = {Journal of Astronomical Telescopes, Instruments, and Systems},
  year = {2022},
  month = {oct},
  volume = {8},
  eid = {049001},
  pages = {049001},
  doi = {10.1117/1.JATIS.8.4.049001},
  eprint = {2210.03823},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2022JATIS...8d9001S},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {adaptive optics, wavefront sensing, instrumentation, pyramid wavefront sensor, testbed, Astrophysics - Instrumentation and Methods for Astrophysics, Physics - Optics},
  pdf = {PEER_REVIEWED_PAPERS/46_Schatz22_ThreeSidedPyramid_049001_1.pdf}
}

@ARTICLE{pourre22,
  author = {{Pourr{\'e}}, N. and {Le Bouquin}, J.-B. and {Milli}, J. and {Sauvage}, J.-F. and {Fusco}, T. and {Correia}, C. and {Oberti}, S.},
  title = {Low-wind-effect impact on Shack-Hartmann-based adaptive optics. Partial control solution in the context of SPHERE and GRAVITY+},
  journal = {\aap},
  year = {2022},
  month = {sep},
  volume = {665},
  eid = {A158},
  pages = {A158},
  doi = {10.1051/0004-6361/202243432},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2022A&A...665A.158P},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {instrumentation: high angular resolution, instrumentation: adaptive optics},
  pdf = {PEER_REVIEWED_PAPERS/43_Pourre22_LWE_SH_SPHERE_GRAVITY.pdf}
}

@ARTICLE{fusco22,
  author = {{Fusco}, Thierry and {Agapito}, Guido and {Neichel}, Benoit and {Oberti}, Sylvain and {Correia}, Carlos and {Haguenauer}, Pierre and {Plantet}, C{\'e}dric and {Pedreros}, Felipe and {Ke}, Zibo and {Costille}, Anne and {Jouve}, Pierre and {Busoni}, Lorenzo and {Esposito}, Simone},
  title = {Key wavefront sensors features for laser-assisted tomographic adaptive optics systems on the Extremely Large Telescope},
  journal = {Journal of Astronomical Telescopes, Instruments, and Systems},
  year = {2022},
  month = {apr},
  volume = {8},
  eid = {021514},
  pages = {021514},
  doi = {10.1117/1.JATIS.8.2.021514},
  eprint = {2206.11383},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2022JATIS...8b1514F},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {adaptive optics, wavefront sensors, tomography, lasers, telescopes, Astrophysics - Instrumentation and Methods for Astrophysics},
  pdf = {PEER_REVIEWED_PAPERS/45_Fusco22_KeyWavefrontSensors_021514_1.pdf}
}

@ARTICLE{plantet22,
  author = {{Plantet}, C{\'e}dric and {Neichel}, Beno{\^\i}t and {Agapito}, Guido and {Busoni}, Lorenzo and {Correia}, Carlos M. and {Fusco}, Thierry and {Bonaglia}, Marco and {Esposito}, Simone},
  title = {Sky coverage assessment for the European ELT: a joint evaluation for MAORY/MICADO and HARMONI},
  journal = {Journal of Astronomical Telescopes, Instruments, and Systems},
  year = {2022},
  month = {apr},
  volume = {8},
  eid = {021509},
  pages = {021509},
  doi = {10.1117/1.JATIS.8.2.021509},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2022JATIS...8b1509P},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {adaptive optics, wavefront sensing, multiconjugate adaptive optics, laser tomography adaptive optics, extremely large telescope},
  pdf = {PEER_REVIEWED_PAPERS/44_Plantet22_MAORY_HARMONI_sky_covpdf.pdf}
}


% 2021
@ARTICLE{schatz21,
  author = {{Schatz}, Lauren and {Males}, Jared R. and {Correia}, Carlos and {Neichel}, Benoit and {Chambouleyron}, Vincent and {Codona}, Johanan and {Fauvarque}, Olivier and {Sauvage}, Jean-Fran{\c{c}}ois and {Fusco}, Thierry and {Hart}, Michael and {Janin-Potiron}, Pierre and {Johnson}, Robert and {Long}, Joseph D. and {Mateen}, Mala},
  title = {Three-sided pyramid wavefront sensor, part 1: simulations and analysis for astronomical adaptive optics},
  journal = {Journal of Astronomical Telescopes, Instruments, and Systems},
  year = {2021},
  month = {oct},
  volume = {7},
  eid = {049001},
  pages = {049001},
  doi = {10.1117/1.JATIS.7.4.049001},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2021JATIS...7d9001S},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {adaptive optics, wavefront sensing, instrumentation, high contrast imaging, simulation},
  pdf = {PEER_REVIEWED_PAPERS/42_Schatz21_ThreeSidedPyramid_049001_1.pdf}
}

@ARTICLE{lamb21,
  author = {{Lamb}, Masen P. and {Correia}, Carlos and {Sivanandam}, Suresh and {Swanson}, Robin and {Zavyalova}, Polina},
  title = {Simultaneous estimation of segmented telescope phasing errors and non-common path aberrations from adaptive-optics-corrected images},
  journal = {\mnras},
  year = {2021},
  month = {aug},
  volume = {505},
  number = {3},
  pages = {3347-3360},
  doi = {10.1093/mnras/stab1247},
  eprint = {2104.14609},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2021MNRAS.505.3347L},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {instrumentation: adaptive optics, telescopes, Astrophysics - Instrumentation and Methods for Astrophysics},
  pdf = {PEER_REVIEWED_PAPERS/41_Lamb21_SimultaneousSegmentPhasingAndNcpa.pdf}
}

@ARTICLE{swanson21,
  author = {{Swanson}, Robin and {Lamb}, Masen and {Correia}, Carlos M. and {Sivanandam}, Suresh and {Kutulakos}, Kiriakos},
  title = {Closed loop predictive control of adaptive optics systems with convolutional neural networks},
  journal = {\mnras},
  year = {2021},
  month = {may},
  volume = {503},
  number = {2},
  pages = {2944-2954},
  doi = {10.1093/mnras/stab632},
  eprint = {2103.06327},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2021MNRAS.503.2944S},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {atmospheric effects, instrumentation: adaptive optics, methods: statistical, Astrophysics - Instrumentation and Methods for Astrophysics},
  pdf = {PEER_REVIEWED_PAPERS/40_Swanson21_PredictiveControl_CNN_2103.06327.pdf}
}

% 2020
@ARTICLE{chambouleyron20,
  author = {{Chambouleyron}, V. and {Fauvarque}, O. and {Janin-Potiron}, P. and {Correia}, C. and {Sauvage}, J.-F. and {Schwartz}, N. and {Neichel}, B. and {Fusco}, T.},
  title = {Pyramid wavefront sensor optical gains compensation using a convolutional model},
  journal = {\aap},
  year = {2020},
  month = {dec},
  volume = {644},
  eid = {A6},
  pages = {A6},
  doi = {10.1051/0004-6361/202037836},
  eprint = {2006.08294},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2020A&A...644A...6C},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {instrumentation: adaptive optics, atmospheric effects, Astrophysics - Instrumentation and Methods for Astrophysics},
  pdf = {PEER_REVIEWED_PAPERS/39_Chambouleyon20_PyramidWFSensor_aa37836-20.pdf}
}

@ARTICLE{correia20,
  author = {{Correia}, Carlos M. and {Fauvarque}, Olivier and {Bond}, Charlotte Z. and {Chambouleyron}, Vincent and {Sauvage}, Jean-Fran{\c{c}}ois and {Fusco}, Thierry},
  title = {Performance limits of adaptive-optics/high-contrast imagers with pyramid wavefront sensors},
  journal = {\mnras},
  year = {2020},
  month = {jul},
  volume = {495},
  number = {4},
  pages = {4380-4391},
  doi = {10.1093/mnras/staa843},
  eprint = {2003.06011},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2020MNRAS.495.4380C},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {atmospheric effects, instrumentation: adaptive optics, methods: analytical, techniques: high angular resolution, Astrophysics - Instrumentation and Methods for Astrophysics},
  pdf = {PEER_REVIEWED_PAPERS/37_Correia20_PerformanceLimitsPWFS_MNRAS.pdf}
}

@ARTICLE{cantalloube20,
  author = {{Cantalloube}, F. and {Farley}, O.~J.~D. and {Milli}, J. and {Bharmal}, N. and {Brandner}, W. and {Correia}, C. and {Dohlen}, K. and {Henning}, Th. and {Osborn}, J. and {Por}, E. and {Su{\'a}rez Valles}, M. and {Vigan}, A.},
  title = {Wind-driven halo in high-contrast images. I. Analysis of the focal-plane images of SPHERE},
  journal = {\aap},
  year = {2020},
  month = {jun},
  volume = {638},
  eid = {A98},
  pages = {A98},
  doi = {10.1051/0004-6361/201937397},
  eprint = {2003.05794},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2020A&A...638A..98C},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {atmospheric effects, instrumentation: adaptive optics, instrumentation: high angular resolution, techniques: image processing, planet-disk interactions, infrared: planetary systems, Astrophysics - Instrumentation and Methods for Astrophysics},
  pdf = {PEER_REVIEWED_PAPERS/38_Cantalloube20_WindDrivenHalo.pdf}
}

@ARTICLE{farley20,
  author = {{Farley}, O.~J.~D. and {Osborn}, J. and {Morris}, T. and {Fusco}, T. and {Neichel}, B. and {Correia}, C. and {Wilson}, R.~W.},
  title = {Limitations imposed by optical turbulence profile structure and evolution on tomographic reconstruction for the ELT},
  journal = {\mnras},
  year = {2020},
  month = {may},
  volume = {494},
  number = {2},
  pages = {2773-2784},
  doi = {10.1093/mnras/staa795},
  eprint = {2003.07676},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2020MNRAS.494.2773F},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {atmospheric effects, instrumentation: adaptive optics, Astrophysics - Instrumentation and Methods for Astrophysics},
  pdf = {PEER_REVIEWED_PAPERS/36_Farley20_LimitationOpticalTurbulenceTomographyELT.pdf}
}

@ARTICLE{schwartz20,
  author = {{Schwartz}, Noah and {Sauvage}, Jean-Fran{\c{c}}ois and {Renault}, Edgard and {Correia}, Carlos and {Neichel}, Benoit and {Fusco}, Thierry and {Dohlen}, Kjetil and {El Hadi}, Kacem and {Petit}, Cyril and {Choquet}, Elodie and {Chambouleyron}, Vincent and {Paufique}, Jerome and {Clarke}, Fraser and {Thatte}, Niranjan and {Bryson}, Ian},
  title = {Design of the HARMONI Pyramid WFS module},
  journal = {arXiv e-prints},
  year = {2020},
  month = {mar},
  eid = {arXiv:2003.07228},
  pages = {arXiv:2003.07228},
  doi = {10.48550/arXiv.2003.07228},
  eprint = {2003.07228},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2020arXiv200307228S},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {Astrophysics - Instrumentation and Methods for Astrophysics, Physics - Atmospheric and Oceanic Physics},
  pdf = {PEER_REVIEWED_PAPERS/65_Schwartz20_HARMONIpyramidWFSdesign_2003.07228.pdf}
}

@ARTICLE{fusco20,
  author = {{Fusco}, T. and {Bacon}, R. and {Kamann}, S. and {Conseil}, S. and {Neichel}, B. and {Correia}, C. and {Beltramo-Martin}, O. and {Vernet}, J. and {Kolb}, J. and {Madec}, P.-Y.},
  title = {Reconstruction of the ground-layer adaptive-optics point spread function for MUSE wide field mode observations},
  journal = {\aap},
  year = {2020},
  month = {mar},
  volume = {635},
  eid = {A208},
  pages = {A208},
  doi = {10.1051/0004-6361/202037595},
  eprint = {2003.04028},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2020A&A...635A.208F},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {instrumentation: adaptive optics, methods: data analysis, methods: observational, techniques: image processing, techniques: high angular resolution, telescopes, Astrophysics - Instrumentation and Methods for Astrophysics},
  pdf = {PEER_REVIEWED_PAPERS/35_Fusco20_PSFreconstructionGLAO_aa37595-20.pdf}
}

% 2019
@ARTICLE{farley19,
  author = {{Farley}, O.~J.~D. and {Osborn}, J. and {Morris}, T. and {Fusco}, T. and
 {Neichel}, B. and {Correia}, C. and {Wilson}, R.~W.},
  title = {Identifying optical turbulence profiles for realistic tomographic error in adaptive optics},
  journal = {MNRAS},
  year = {2019},
  month = {Sep},
  volume = {488},
  number = {1},
  pages = {213-221},
  eprint = {1906.03511},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2019MNRAS.488..213F},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {atmospheric effects, instrumentation: adaptive optics, Astrophysics - Instrumentation and Methods for Astrophysics},
  url = {http://dx.doi.org/10.1093/mnras/stz1669},
  pdf = {PEER_REVIEWED_PAPERS/34_Farley19_TurbulenceProfiles_stz1669.p.pdf},
  doi = {10.1093/mnras/stz1669},
  url = {https://doi.org/10.1093/mnras/stz1669}
}

@ARTICLE{fauvarque19,
  author = {{Fauvarque}, Olivier and {Janin-Potiron}, Pierre and {Correia}, Carlos and
 {Br{\^u}l{\'e}}, Yoann and {Neichel}, Benoit and
 {Chambouleyron}, Vincent and {Sauvage}, Jean-Francois and
 {Fusco}, Thierry},
  title = {Kernel formalism applied to Fourier-based wave-front sensing in presence of residual phases},
  journal = {Journal of the Optical Society of America A},
  year = {2019},
  month = {Jul},
  volume = {36},
  number = {7},
  pages = {1241},
  eprint = {1902.05440},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2019JOSAA..36.1241F},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {Astrophysics - Instrumentation and Methods for Astrophysics},
  url = {http://dx.doi.org/10.1364/JOSAA.36.001241},
  pdf = {PEER_REVIEWED_PAPERS/33_Fauvarquw19_KernelFormalism_02.05440.pdf},
  doi = {10.1364/josaa.36.001241},
  url = {https://doi.org/10.1364/josaa.36.001241}
}

@ARTICLE{beltramomartin19,
  author = {{Beltramo-Martin}, O. and {Correia}, C.~M. and {Ragland}, S. and
 {Jolissaint}, L. and {Neichel}, B. and {Fusco}, T. and
 {Wizinowich}, P.~L.},
  title = {PRIME: Psf Reconstruction and Identification for Multiple sources characterization Enhancement. Application to Keck NIRC2 imager.},
  journal = {Monthly Notices of the Royal Astronomical Society},
  year = {2019},
  month = {Jun},
  pages = {1579},
  eprint = {1903.02772},
  archiveprefix = {arXiv},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2019MNRAS.tmp.1579B},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {instrumentation: Adaptive optics, atmospheric effects, methods:data analysis, methods: analytical, Astrophysics - Instrumentation and Methods for Astrophysics},
  url = {http://dx.doi.org/10.1093/mnras/stz1667},
  month
 primaryclass = {astro-ph.IM},
  pdf = {PEER_REVIEWED_PAPERS/32_Martin19_PRIME_PSFreconstruction_stz1667.pdf},
  doi = {10.1093/mnras/stz1667},
  url = {https://doi.org/10.1093/mnras/stz1667}
}

@ARTICLE{beltramomartin19a,
  author = {{Beltramo-Martin}, O. and {Bharmal}, N.~A. and {Correia}, C.~M.},
  title = {PEPITO: atmospheric Profiling from short-Exposure focal Plane Images in seeing-limiTed mOde},
  journal = {Monthly Notices of the Royal Astronomical Society},
  year = {2019},
  month = {Jun},
  volume = {486},
  number = {2},
  pages = {2032-2041},
  doi = {10.1093/mnras/stz979},
  eprint = {1901.10701},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2019MNRAS.486.2032B},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {atmospheric effects, methods: analytical, methods: data analysis, Astrophysics - Instrumentation and Methods for Astrophysics},
  url = {http://dx.doi.org/10.1093/mnras/stz979},
  pdf = {PEER_REVIEWED_PAPERS/31_Martin19_PEPITO_Cn2ProfilesEstimation_stz979.pdf}
}

@ARTICLE{janinpotiron19,
  author = {{Janin-Potiron}, Pierre and {Chambouleyron}, Vincent and
 {Schatz}, Lauren and {Fauvarque}, Olivier and {Bond}, Charlotte Z. and
 {Abautret}, Yannick and {Muslimov}, Eduard and {El-Hadi}, Kacem and
 {Sauvage}, Jean-Fran{\c{c}}ois and {Dohlen}, Kjetil and
 {Neichel}, Beno{\^\i}t and {Correia}, Carlos M. and {Fusco}, Thierry},
  title = {Adaptive optics with programmable Fourier-based wavefront sensors: a spatial light modulator approach to the LOOPS testbed},
  journal = {arXiv e-prints},
  year = {2019},
  month = {Mar},
  eid = {arXiv:1903.06599},
  pages = {arXiv:1903.06599},
  eprint = {1903.06599},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2019arXiv190306599J},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {Astrophysics - Instrumentation and Methods for Astrophysics},
  url = {https://arxiv.org/pdf/1903.06599},
  pdf = {PEER_REVIEWED_PAPERS/30_Janin-Potiron19_LOOPsBench_1903.06599.pdf}
}

@ARTICLE{andrade19,
  author = {{Andrade}, Paulo P. and {Garcia}, Paulo J.~V. and {Correia}, Carlos M. and
 {Kolb}, Johann and {Carvalho}, Maria In{\^e}s},
  title = {Estimation of atmospheric turbulence parameters from Shack-Hartmann wavefront sensor measurements},
  journal = {MNRAS},
  year = {2019},
  month = {Feb},
  volume = {483},
  number = {1},
  pages = {1192-1201},
  doi = {10.1093/mnras/sty3181},
  eprint = {1811.08396},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2019MNRAS.483.1192A},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {turbulence, atmospheric effects, instrumentation: adaptive optics, instrumentation: high angular resolution, site testing, techniques: high angular resolution, Astrophysics - Instrumentation and Methods for Astrophysics},
  url = {http://dx.doi.org/10.1093/mnras/sty3181},
  pdf = {PEER_REVIEWED_PAPERS/29_Andrade19_EstimationAtmosphericParameters.pdf}
}

% 2018
@ARTICLE{cantalloube18,
  author = {{Cantalloube}, F. and {Por}, E.~H. and {Dohlen}, K. and
 {Sauvage}, J. -F. and {Vigan}, A. and {Kasper}, M. and {Bharmal}, N. and
 {Henning}, T. and {Brandner}, W. and {Milli}, J. and {Correia}, C. and
 {Fusco}, T.},
  title = {Origin of the asymmetry of the wind driven halo observed in high-contrast images},
  journal = {Astronomy \& Astrophysics},
  year = {2018},
  month = {Dec},
  volume = {620},
  eid = {L10},
  pages = {L10},
  doi = {10.1051/0004-6361/201834311},
  eprint = {1810.13171},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2018A&A...620L..10C},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {instrumentation: adaptive optics, instrumentation: high angular resolution, atmospheric effects, techniques: image processing, methods: data analysis, infrared: planetary systems, Astrophysics - Instrumentation and Methods for Astrophysics},
  url = {http://dx.doi.org/10.1051/0004-6361/201834311},
  pdf = {PEER_REVIEWED_PAPERS/28_Cantalloube18_OriginAsymetricWindHalo.pdf}
}

@ARTICLE{beltramomartin18,
  author = {{Beltramo-Martin}, O. and {Correia}, C.~M. and {Neichel}, B. and {Fusco}, T.},
  title = {Focal-plane C$_{n}$$^{2}$(h) profiling based on single-conjugate adaptive optics compensated images},
  journal = {Monthly Notices of the Royal Astronomical Society},
  year = {2018},
  month = {dec},
  volume = {481},
  pages = {2349-2360},
  doi = {10.1093/mnras/sty2399},
  eprint = {1808.10712},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {atmospheric effects, instrumentation: adaptive optics, methods: analytical, methods: data analysis},
  url = {http://adsabs.harvard.edu/abs/2018MNRAS.481.2349B},
  date-added = {2018-11-05 15:37:27 +0000},
  date-modified = {2018-11-05 15:37:36 +0000},
  bdsk-url-1 = {http://dx.doi.org/10.1093/mnras/sty2399},
  pdf = {PEER_REVIEWED_PAPERS/27_Martin18_FPP.pdf}
}

@ARTICLE{ono18,
  author = {Yoshito H. Ono and Carlos Correia and Rodolphe Conan and Leonardo Blanco and Benoit Neichel and Thierry Fusco},
  title = {Fast iterative tomographic wavefront estimation with recursive Toeplitz reconstructor structure for large-scale systems},
  journal = {J. Opt. Soc. Am. A},
  year = {2018},
  month = {Aug},
  volume = {35},
  number = {8},
  pages = {1330--1345},
  doi = {10.1364/JOSAA.35.001330},
  keywords = {Active or adaptive optics; Inverse problems; Atmospheric turbulence; Computation methods; Laser guide stars; Numerical simulation; Phase space analysis methods; Wavefront aberrations},
  abstract = {Tomographic wavefront reconstruction is the main computational bottleneck to realize real-time correction for turbulence-induced wavefront aberrations in future laser-assisted tomographic adaptive-optics (AO) systems for ground-based giant segmented mirror telescopes because of its unprecedented number of degrees of freedom, N, i.e., the number of measurements from wavefront sensors. In this paper, we provide an efficient implementation of the minimum-mean-square error (MMSE) tomographic wavefront reconstruction, which is mainly useful for some classes of AO systems not requiring multi-conjugation, such as laser-tomographic AO, multi-object AO, and ground-layer AO systems, but is also applicable to multi-conjugate AO systems. This work expands that by Conan \[Proc. SPIE9148, 91480R (2014)PSISDG0277-786X10.1117/12.2054472\] to the multi-wavefront tomographic case using natural and laser guide stars. The new implementation exploits the Toeplitz structure of covariance matrices used in an MMSE reconstructor, which leads to an overall O(N\&\#x2009;log\&\#x2009;N) real-time complexity compared with O(N2) of the original implementation using straight vector-matrix multiplication. We show that the Toeplitz-based algorithm leads to 60\&\#x00A0;nm rms wavefront error improvement for the European Extremely Large Telescope laser-tomography AO system over a well-known sparse-based tomographic reconstruction; however, the number of iterations required for suitable performance is still beyond what a real-time system can accommodate to keep up with the time-varying turbulence.},
  url = {http://josaa.osa.org/abstract.cfm?URI=josaa-35-8-1330},
  publisher = {OSA},
  pdf = {PEER_REVIEWED_PAPERS/26_Ono18_ToeplizReconstructor.pdf}
}

@ARTICLE{beltramomartin18a,
  author = {Beltramo-Martin, O and Correia, C M and Mieda, E and Neichel, B and Fusco, T and Witzel, G and Lu, J R and Véran, J-P},
  title = {Off-axis point spread function characterization in laser guide star adaptive optics systems},
  journal = {Monthly Notices of the Royal Astronomical Society},
  year = {2018},
  volume = {478},
  number = {4},
  pages = {4642-4656},
  doi = {10.1093/mnras/sty1103},
  eprint = {/oup/backfile/content_public/journal/mnras/478/4/10.1093_mnras_sty1103/1/sty1103.pdf},
  url = {http://dx.doi.org/10.1093/mnras/sty1103},
  pdf = {PEER_REVIEWED_PAPERS/24_Martin18_OffAxisPSFR.pdf}
}

@ARTICLE{anugu18,
  author = {Anugu, Narsireddy and Garcia, Paulo J V and Correia, Carlos M},
  title = {Peak-locking centroid bias in Shack–Hartmann wavefront sensing},
  journal = {Monthly Notices of the Royal Astronomical Society},
  year = {2018},
  volume = {476},
  number = {1},
  pages = {300-306},
  doi = {10.1093/mnras/sty182},
  eprint = {/oup/backfile/content_public/journal/mnras/476/1/10.1093_mnras_sty182/1/sty182.pdf},
  url = {http://dx.doi.org/10.1093/mnras/sty182},
  pdf = {PEER_REVIEWED_PAPERS/25_Anugu18_Peak-locking_centroidBias_SHWFS_sty182.pdf}
}

% 2017
@ARTICLE{correia17,
  author = {Carlos M. Correia and Charlotte Z. Bond and Jean-Fran\c{c}ois Sauvage and Thierry Fusco and Rodolphe Conan and Peter L. Wizinowich},
  title = {Modeling astronomical adaptive optics performance with temporally filtered Wiener reconstruction of slope data},
  journal = {J. Opt. Soc. Am. A},
  year = {2017},
  month = {Oct},
  volume = {34},
  number = {10},
  pages = {1877--1887},
  doi = {10.1364/JOSAA.34.001877},
  keywords = {Probability theory, stochastic processes, and statistics; Active or adaptive optics; Atmospheric turbulence; Imaging through turbulent media},
  abstract = {We build on a long-standing tradition in astronomical adaptive optics (AO) of specifying performance metrics and error budgets using linear systems modeling in the spatial-frequency domain. Our goal is to provide a comprehensive tool for the calculation of error budgets in terms of residual temporally filtered phase power spectral densities and variances. In addition, the fast simulation of AO-corrected point spread functions (PSFs) provided by this method can be used as inputs for simulations of science observations with next-generation instruments and telescopes, in particular to predict post-coronagraphic contrast improvements for planet finder systems. We extend the previous results presented in Correia and Teixeira \[J. Opt. Soc. Am. A31, 2763 (2014)JOAOD60740-323210.1364/JOSAA.31.002763\] to the closed-loop case with predictive controllers and generalize the analytical modeling of Rigaut et\&\#x00A0;al. \[Proc. SPIE3353, 1038 (1998)PSISDG0277-786X10.1117/12.321649\], Flicker \[Technical Report (W. M. Keck Observatory, 2007)\], and Jolissaint \[J. Eur. Opt. Soc.5, 10055 (2010)1990-257310.2971/jeos.2010.10055\]. We follow closely the developments of Ellerbroek \[J. Opt. Soc. Am. A22, 310 (2005)JOAOD60740-323210.1364/JOSAA.22.000310\] and propose the synthesis of a distributed Kalman filter to mitigate both aniso-servo-lag and aliasing errors while minimizing the overall residual variance. We discuss applications to (i)\&\#x00A0;analytic AO-corrected PSF modeling in the spatial-frequency domain, (ii)\&\#x00A0;post-coronagraphic contrast enhancement, (iii)\&\#x00A0;filter optimization for real-time wavefront reconstruction, and (iv)\&\#x00A0;PSF reconstruction from system telemetry. Under perfect knowledge of wind velocities, we show that \&\#x223C;60\&\#x2009;\&\#x2009;nm rms error reduction can be achieved with the distributed Kalman filter embodying antialiasing reconstructors on 10\&\#x00A0;m class high-order AO systems, leading to contrast improvement factors of up to three orders of magnitude at few \&\#x03BB;/D separations (\&\#x223C;1\&\#x2212;5\&\#x03BB;/D) for a 0 magnitude star and reaching close to one order of magnitude for a 12 magnitude star.},
  url = {http://josaa.osa.org/abstract.cfm?URI=josaa-34-10-1877},
  publisher = {OSA},
  pdf = {PEER_REVIEWED_PAPERS/23_Correia17_ModellingTemporallyFilteredWienerReconstructors.pdf}
}

@ARTICLE{bond17,
  author = {Charlotte Z. Bond and Carlos M. Correia and Jean-Fran\c{c}ois Sauvage and Benoit Neichel and Thierry Fusco},
  title = {Iterative wave-front reconstruction in the Fourier domain},
  journal = {Opt. Express},
  year = {2017},
  month = {May},
  volume = {25},
  number = {10},
  pages = {11452--11465},
  doi = {10.1364/OE.25.011452},
  keywords = {Numerical approximation and analysis; Active or adaptive optics; Wave-front sensing; Fourier optics and signal processing ; Image processing},
  abstract = {The use of Fourier methods in wave-front reconstruction can significantly reduce the computation time for large telescopes with a high number of degrees of freedom. However, Fourier algorithms for discrete data require a rectangular data set which conform to specific boundary requirements, whereas wave-front sensor data is typically defined over a circular domain (the telescope pupil). Here we present an iterative Gerchberg routine modified for the purposes of discrete wave-front reconstruction which adapts the measurement data (wave-front sensor slopes) for Fourier analysis, fulfilling the requirements of the fast Fourier transform (FFT) and providing accurate reconstruction. The routine is used in the adaptation step only and can be coupled to any other Wiener-like or least-squares method. We compare simulations using this method with previous Fourier methods and show an increase in performance in terms of Strehl ratio and a reduction in noise propagation for a 40\&\#x000D7;40 SPHERE-like adaptive optics system. For closed loop operation with minimal iterations the Gerchberg method provides an improvement in Strehl, from 95.4\&\#x00025; to 96.9\&\#x00025; in K-band. This corresponds to ~ 40 nm improvement in rms, and avoids the high spatial frequency errors present in other methods, providing an increase in contrast towards the edge of the correctable band.},
  url = {http://www.opticsexpress.org/abstract.cfm?URI=oe-25-10-11452},
  date-added = {2017-07-22 00:20:06 +0000},
  date-modified = {2017-07-22 00:20:18 +0000},
  publisher = {OSA},
  pdf = {PEER_REVIEWED_PAPERS/22_Bond17_IterativeFourierReconstruction_OptExp.pdf}
}

@ARTICLE{lamb17,
  author = {Lamb, Masen P. and Correia, Carlos and Sauvage, Jean-Fran{\c c}ois and V{\'e}ran, Jean-Pierre and Andersen, David R. and Vigan, Arthur and Wizinowich, Peter L. and van Dam, Marcos A. and Mugnier, Laurent and Bond, Charlotte},
  title = {Quantifying telescope phase discontinuities external to adaptive optics systems by use of phase diversity and focal plane sharpening},
  journal = {Journal of Astronomical Telescopes, Instruments, and Systems},
  year = {2017},
  volume = {3},
  number = {3},
  pages = {039001},
  doi = {10.1117/1.JATIS.3.3.039001},
  abstract = {Abstract. 
 We propose and apply two methods to estimate pupil plane phase discontinuities for two realistic scenarios on the very large telescope (VLT) and Keck. The methods use both phase diversity and a form of image sharpening. For the case of VLT, we simulate the ``low wind effect'' (LWE) that is responsible for focal plane errors in the spectro-polarimetric high contrast exoplanet research (SPHERE) system in low wind and good seeing conditions. We successfully estimate the simulated LWE using both methods and show that they are complimentary to one another. We also demonstrate that single image phase diversity (also known as phase retrieval with diversity) is also capable of estimating the simulated LWE when using the natural defocus on the SPHERE/differential tip tilt sensor (DTTS) imager. We demonstrate that phase diversity can estimate the LWE to within 30-nm root mean square wavefront error (RMS WFE), which is within the allowable tolerances to achieve a target SPHERE contrast of 10−6. Finally, we simulate 153-nm RMS of piston errors on the mirror segments of Keck and produce NIRC2 images subject to these effects. We show that a single, diverse image with 1.5 waves (peak-to-valley) of focus can be used to estimate this error to within 29-nm RMS WFE, and a perfect correction of our estimation would increase the Strehl ratio of an NIRC2 image by 12%.},
  url = {http://dx.doi.org/10.1117/1.JATIS.3.3.039001},
  isbn = {2329-4124},
  pdf = {PEER_REVIEWED_PAPERS/21_Lamb17_CalibrateTelescopeErrors_JATIS-16056P_online.pdf}
}

@ARTICLE{ono17,
  author = {Ono, Yoshito H. and Correia, Carlos M. and Andersen, Dave R. and Lardière, Olivier and Oya, Shin and Akiyama, Masayuki and Jackson, Kate and Bradley, Colin},
  title = {Statistics of turbulence parameters at Maunakea using the multiple wavefront sensor data of RAVEN},
  journal = {Monthly Notices of the Royal Astronomical Society},
  year = {2017},
  volume = {465},
  number = {4},
  pages = {4931-4941},
  doi = {10.1093/mnras/stw3083},
  eprint = {/oup/backfile/content_public/journal/mnras/465/4/10.1093_mnras_stw3083/1/stw3083.pdf},
  url = {http://dx.doi.org/10.1093/mnras/stw3083},
  pdf = {PEER_REVIEWED_PAPERS/20_Ono17a_TurbulenceIdentificationSLODAR_MNRAS.pdf}
}

% 2016
@ARTICLE{martin16,
  author = {{Martin}, Olivier A. and {Correia}, Carlos M. and {Gendron}, Eric and
 {Rousset}, Gerard and {Gratadour}, Damien and {Vidal}, Fabrice
 and {Morris}, Tim J. and {Basden}, Alastair G. and {Myers},
 Richard M. and {Neichel}, Benoit and {Fusco}, Thierry},
  title = {Point spread function reconstruction validated using on-sky CANARY data
 in multiobject adaptive optics mode},
  journal = {Journal of Astronomical Telescopes, Instruments, and Systems},
  year = {2016},
  month = {Oct},
  volume = {2},
  eid = {048001},
  pages = {048001},
  doi = {10.1117/1.JATIS.2.4.048001},
  adsurl = {https://ui.adsabs.harvard.edu/#abs/2016JATIS...2d8001M},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  url = {http://dx.doi.org/10.1117/1.JATIS.2.4.048001},
  pdf = {PEER_REVIEWED_PAPERS/19_Martin16_PSFreconstructionMOAO_JATIS.pdf}
}

@ARTICLE{lamb16,
  author = {M. Lamb and K. Venn and D. Andersen and S. Oya and M. Shetrone and A. Fattahi and L. Howes and M. Asplund and O. Lardiere and M. Akiyama and Y. Ono and H. Terada and Y. Hayano and G. Suzuki and C. Blain and K. Jackson and C. Correia and K. Youakim and and C. Bradley},
  title = {Using the Multi-Object Adaptive Optics demonstrator RAVEN to observe metal-poor stars in and towards the Galactic Centre},
  journal = {MNRAS},
  year = {2016},
  month = {sept},
  volume = {465},
  pages = {3536-3557},
  doi = {10.1093/mnras/stw2865},
  url = {http://dx.doi.org/10.1093/mnras/stw2865},
  pdf = {PEER_REVIEWED_PAPERS/17_Lamb16_MetalPoorStarsRaven_MNRAS.pdf}
}

@ARTICLE{oamartin16,
  author = {O.A.Martin and E. Gendron and G. Rousset and D. Gratadour and F. Vidal and T.~J. Morris and A.~G. Basden and R.~M. Myers and C.M. Correia and D. Henry},
  title = {Wave-Front Error breakdown in LGS MOAO validated on-sky by CANARY},
  journal = {A\&A},
  year = {2016},
  month = {sept},
  volume = {in press},
  doi = {10.1051/0004-6361/201629271},
  url = {http://dx.doi.org/10.1051/0004-6361/201629271},
  pdf = {PEER_REVIEWED_PAPERS/16_Martin16_CanaryErrorBudget_AA.pdf}
}

@ARTICLE{aguesalaga16,
  author = {A.Guesalaga and B.Neichel and C.M.Correia and T.Butterley and J.Osborn and E.Masciadri and T.Fusco and J.-F.Sauvage},
  title = {On-line estimation of the wavefront outer-scale profile from adaptive optics telemetry},
  journal = {MNRAS},
  year = {2016},
  month = {sept},
  volume = {Monthly Notices of the Royal Astronomical Society},
  doi = {10.1093/mnras/stw2548},
  url = {http://mnras.oxfordjournals.org/content/early/2016/10/08/mnras.stw2548.abstract},
  pdf = {PEER_REVIEWED_PAPERS/15_Guesalaga16_OnlineEstimationOuterScale_MNRAS.pdf}
}

@ARTICLE{ono16,
  author = {Ono, Y.~H. and Akiyama, M. and Oya, S. and Lardiere, O. and 
	Andersen, D.~R. and Correia, C.~M. and Jackson, K. and Bradley, C.
	},
  title = {Multi time-step wavefront reconstruction for tomographic adaptive-optics systems},
  journal = {Journal of the Optical Society of America A},
  year = {2016},
  month = {apr},
  volume = {33},
  pages = {726},
  doi = {10.1364/JOSAA.33.000726},
  eprint = {1604.02849},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  url = {http://cdsads.u-strasbg.fr/abs/2016JOSAA..33..726O},
  pdf = {PEER_REVIEWED_PAPERS/18_Ono16_MultiTimeStepTomography_JOSAA.pdf}
}

% 2015
@ARTICLE{correia15,
  author = {Correia, C.~M. and Jackson, K. and Veran, J.-P. and 
	Andersen, D. and Lardiere, O. and Bradley, C.},
  title = {Spatio-angular minimum-variance tomographic controller for multi-object adaptive-optics systems},
  journal = {Applied Optics},
  year = {2015},
  month = {jun},
  volume = {54},
  pages = {5281},
  doi = {10.1364/AO.54.005281},
  eprint = {1504.07777},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  url = {http://cdsads.u-strasbg.fr/abs/2015ApOpt..54.5281C},
  pdf = {PEER_REVIEWED_PAPERS/14_Correia15_SpatioAngularLQGcontrollerMOAO_AppOpt.pdf}
}

@ARTICLE{mortier15,
  author = {Mortier, A. and Faria, J.~P. and Correia, C.~M. and Santerne, A. and 
	Santos, N.~C.},
  title = {BGLS: A Bayesian formalism for the generalised Lomb-Scargle periodogram},
  journal = {Astronomy and Astrophysics},
  year = {2015},
  month = {jan},
  volume = {573},
  eid = {A101},
  pages = {A101},
  doi = {10.1051/0004-6361/201424908},
  eprint = {1412.0467},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {methods: data analysis, methods: statistical},
  url = {http://cdsads.u-strasbg.fr/abs/2015A%26A...573A.101M},
  pdf = {PEER_REVIEWED_PAPERS/13_Mortier15_BayesianLombScarglePeriodogram_AA.pdf}
}

@ARTICLE{jackson15,
  author = {Jackson, K. and Correia, C.~M. and Lardiere, O. and Andersen, D. and 
	Bradley, C.},
  title = {Linear prediction of atmospheric wave-fronts for tomographic adaptive optics systems: modelling and robustness assessment},
  journal = {Optics Letters},
  year = {2015},
  month = {jan},
  volume = {40},
  pages = {143},
  doi = {10.1364/OL.40.000143},
  eprint = {1501.01195},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  url = {http://cdsads.u-strasbg.fr/abs/2015OptL...40..143J},
  pdf = {PEER_REVIEWED_PAPERS/12_Jackson15_LinearPredictionWFronts_OptLett.pdf}
}

% 2014
@ARTICLE{correia14,
  author = {Correia, C.~M. and Teixeira, J.},
  title = {Anti-aliasing Wiener filtering for wave-front reconstruction in the spatial-frequency domain for high-order astronomical adaptive-optics systems},
  journal = {Journal of the Optical Society of America A},
  year = {2014},
  month = {dec},
  volume = {31},
  pages = {2763},
  doi = {10.1364/JOSAA.31.002763},
  eprint = {1410.6055},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  url = {http://cdsads.u-strasbg.fr/abs/2014JOSAA..31.2763C},
  pdf = {PEER_REVIEWED_PAPERS/11_Correia14_AntiAliasingWFReconstruction_JOSAA.pdf}
}

@ARTICLE{mortier14,
  author = {Mortier, A. and Faria, J.~P. and Correia, C.~M. and Santerne, A. and 
	Santos, N.~C.},
  title = {VizieR Online Data Catalog: Generalised Lomb-Scargle periodogram code (Mortier+, 2015)},
  journal = {VizieR Online Data Catalog},
  year = {2014},
  month = {nov},
  volume = {357},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {Models},
  url = {http://adsabs.harvard.edu/abs/2014yCat..35730101M}
}

@ARTICLE{correia14a,
  author = {C.~M. Correia and K. Jackson and J.-P. Veran and D. Andersen and O. Lardiere and C. Bradley},
  title = {Static and predictive tomographic reconstruction for wide-field multi-object adaptive optics systems},
  journal = {J. Opt. Soc. Am. A},
  year = {2014},
  month = {Jan},
  volume = {31},
  number = {1},
  pages = {101--113},
  doi = {10.1364/JOSAA.31.000101},
  keywords = {Active or adaptive optics; Atmospheric turbulence},
  abstract = {Multi-object adaptive optics (MOAO) systems are still in their infancy: their complex optical designs for tomographic, wide-field wavefront sensing, coupled with open-loop (OL) correction, make their calibration a challenge. The correction of a discrete number of specific directions in the field allows for streamlined application of a general class of spatio-angular algorithms, initially proposed in Whiteley et\&\#xA0;al. \[J. Opt. Soc. Am. A15, 2097 (1998)\], which is compatible with partial on-line calibration. The recent Learn \& Apply algorithm from Vidal et\&\#xA0;al. \[J. Opt. Soc. Am. A27, A253 (2010)\] can then be reinterpreted in a broader framework of tomographic algorithms and is shown to be a special case that exploits the particulars of OL and aperture-plane phase conjugation. An extension to embed a temporal prediction step to tackle sky-coverage limitations is discussed. The trade-off between lengthening the camera integration period, therefore increasing system lag error, and the resulting improvement in SNR can be shifted to higher guide-star magnitudes by introducing temporal prediction. The derivation of the optimal predictor and a comparison to suboptimal autoregressive models is provided using temporal structure functions. It is shown using end-to-end simulations of Raven, the MOAO science, and technology demonstrator for the 8\&\#xA0;m Subaru telescope that prediction allows by itself the use of 1-magnitude-fainter guide stars.},
  url = {http://josaa.osa.org/abstract.cfm?URI=josaa-31-1-101},
  pdf = {PEER_REVIEWED_PAPERS/10_Correia14_TomographyMOAO_JOSAA.pdf},
  publisher = {OSA}
}

% 2013
@ARTICLE{correia13,
  author = {C.~M. Correia and Jean-Pierre Veran and Glen Herriot and Brent Ellerbroek and Lianqi Wang and Luc Gilles},
  title = {Increased sky coverage with optimal correction of tilt and tilt-anisoplanatism modes in laser-guide-star multiconjugate adaptive optics},
  journal = {J. Opt. Soc. Am. A},
  year = {2013},
  month = {Apr},
  volume = {30},
  number = {4},
  pages = {604--615},
  doi = {10.1364/JOSAA.30.000604},
  keywords = {Probability theory, stochastic processes, and statistics; Active or adaptive optics; Tomography},
  abstract = {Laser-guide-star multiconjugate adaptive optics (MCAO) systems require natural guide stars (NGS) to measure tilt and tilt-anisoplanatism modes. Making optimal use of the limited number of photons coming from such, generally dim, sources is mandatory to obtain reasonable sky coverage, i.e., the probability of finding asterisms amenable to NGS wavefront (WF) sensing for a predefined WF error budget. This paper presents a Strehl-optimal (minimum residual variance) spatiotemporal reconstructor merging principles of modal atmospheric tomography and optimal stochastic control theory. Simulations of NFIRAOS, the first light MCAO system for the thirty-meter telescope, using \&\#x223C;500 typical NGS asterisms, show that the minimum-variance (MV) controller delivers outstanding results, in particular for cases with relatively dim stars (down to magnitude 22 in the H-band), for which low-temporal frame rates (as low as 16\&\#xA0;Hz) are required to integrate enough flux. Over all the cases tested \&\#x223C;21\&\#x2009;\&\#x2009;nm\&\#x2009; rms median improvement in WF error can be achieved with the MV compared to the current baseline, a type-II controller based on a double integrator. This means that for a given level of tolerable residual WF error, the sky coverage is increased by roughly 10\%, a quite significant figure. The improvement goes up to more than 20\% when compared with a traditional single-integrator controller.},
  url = {http://josaa.osa.org/abstract.cfm?URI=josaa-30-4-604},
  pdf = {PEER_REVIEWED_PAPERS/9_Correia13_IncreasedSkyCoverage_AHST_JOSAA.pdf},
  publisher = {OSA}
}

% 2012
@ARTICLE{gilles12,
  author = {Luc Gilles and C.~M. Correia and Jean-Pierre Veran and Lianqi Wang and Brent Ellerbroek},
  title = {Simulation model based approach for long exposure atmospheric point spread function reconstruction for laser guide star multiconjugate adaptive optics},
  journal = {Appl. Opt.},
  year = {2012},
  month = {Nov},
  volume = {51},
  number = {31},
  pages = {7443--7458},
  doi = {10.1364/AO.51.007443},
  keywords = {Active or adaptive optics; Atmospheric turbulence},
  abstract = {This paper discusses an innovative simulation model based approach for long exposure atmospheric point spread function (PSF) reconstruction in the context of laser guide star (LGS) multiconjugate adaptive optics (MCAO). The approach is inspired from the classical scheme developed by V\&\#xE9;ran et\&\#xA0;al. \[J. Opt. Soc. Am. A14, 3057 (1997)10.1364/JOSAA.14.003057JOAOD61084-7529\] and Flicker et\&\#xA0;al. \[Astron. Astrophys.400, 1199 (2003)10.1051/0004-6361:20030022AAEJAF0004-6361\] and reconstructs the long exposure optical transfer function (OTF), i.e., the Fourier transformed PSF, as a product of separate long-exposure tip/tilt removed and tip/tilt OTFs, each estimated by postprocessing system and simulation telemetry data. Sample enclosed energy results assessing reconstruction accuracy are presented for the Thirty Meter Telescope LGS MCAO system currently under design and show that percent level absolute and differential photometry over a 30\&\#xA0;arcsec diameter field of view are achievable provided the simulation model faithfully represents the real system.},
  url = {http://ao.osa.org/abstract.cfm?URI=ao-51-31-7443},
  pdf = {PEER_REVIEWED_PAPERS/8_Gilles12_PointSpreadReconstruction_ApplOpt.pdf},
  publisher = {OSA}
}

@ARTICLE{correia12,
  author = {Correia, C.~M. and Veran, J.-P.},
  title = {Woofer-tweeter temporal correction split in atmospheric adaptive optics},
  journal = {Optics Letters},
  year = {2012},
  month = {Aug},
  volume = {37},
  number = {16},
  pages = {3132-3134},
  url = {http://www.jstor.org/stable/10.1086/665924},
  pdf = {PEER_REVIEWED_PAPERS/7_Correia12_OptLett_WooferTweeterSplitCorrection.pdf},
  doi = {10.1364/ol.37.003132},
  url = {https://doi.org/10.1364/ol.37.003132}
}

@ARTICLE{correia12a,
  author = {Correia, C.~M. and Veran, Jean-Pierre and Herriot, Glen},
  title = {Advanced vibration suppression algorithms in adaptive optics systems},
  journal = {J. Opt. Soc. Am. A},
  year = {2012},
  month = {Mar},
  volume = {29},
  number = {3},
  pages = {185--194},
  doi = {http://dx.doi.org/10.1364/JOSAA.29.000185},
  keywords = {Probability theory, stochastic processes, and statistics; Active or
	adaptive optics; Wave-front sensing},
  abstract = {Vibration suppression in astronomical adaptive optics (AO) systems
	has gathered great attention in the context of next-generation instrumentation
	for current telescopes and future Extremely Large Telescopes. Laser
	tomographic AO systems require natural guide stars to measure the
	low-order modes such as tip--tilt (TT) and TT-anisoplanatism. To
	increase the sky coverage, the guide stars are often faint, thus
	requiring lower temporal sampling frequencies to work on a more favorable
	signal-to-noise regime. Such sampling frequencies can be of the order
	of, or even lower than, the range of frequencies where vibrations
	are likely to appear. Ideally, vibrations affecting the low-order
	modes could be corrected at the higher laser loop frame rate using
	an upsampling procedure. This paper compares the most relevant solutions
	proposed hitherto to a novel multirate algorithm using the linear-quadratic-Gaussian
	(LQG) approach capable of upsampling the correction to further reduce
	the impact of vibrations. Results from numerical Monte Carlo simulations
	span a large range of parameters from pure sinusoids to relatively
	broad peak vibrations, covering the likely-to-be signals in a realistic
	AO system. The improvement is shown at sampling frequencies from
	20 to 800 Hz, including below the vibration itself, in the example
	of 29.5 Hz on a Thirty Meter Telescope-like scenario. The multirate
	LQG ensures the least residual for both faint and bright stars for
	all the peak widths considered based on telemetry from the Keck Observatory.},
  url = {http://josaa.osa.org/abstract.cfm?URI=josaa-29-3-185},
  pdf = {PEER_REVIEWED_PAPERS/6_Correia12_VibrationSuppressionAlgos_JOSAA.pdf},
  publisher = {OSA}
}

@ARTICLE{andersen12,
  author = {Andersen, David R. and Jackson, Kate J. and Blain, Celia and
	Bradley, Colin and Correia, C.~M. and Ito, Meguru and Lardiere,
	Olivier and Veran, Jean-Pierre},
  title = {Performance Modeling for the RAVEN Multi-Object Adaptive Optics Demonstrator},
  journal = {Publications of the Astronomical Society of the Pacific},
  year = {2012},
  volume = {124},
  number = {915},
  pages = {pp. 469-484},
  url = {http://www.jstor.org/stable/10.1086/665924},
  pdf = {PEER_REVIEWED_PAPERS/5_Andersen12_RavenModellling_PASP.pdf},
  doi = {10.1086/665924},
  url = {https://doi.org/10.1086/665924}
}

% 2011
@ARTICLE{correia11,
  author = {C.~M. Correia and Henri-Francois Raynaud and Caroline Kulcsar and Jean-Marc Conan},
  title = {Minimum-variance control for woofer--tweeter systems in adaptive
	optics},
  journal = {European Journal of Control},
  year = {2011},
  volume = {17},
  number = {3},
  pages = {222--236},
  doi = {http://dx.doi.org/10.3166/ejc.17.222-236},
  url = {http://www.sciencedirect.com/science/article/pii/S0947358011705891},
  pdf = {PEER_REVIEWED_PAPERS/4_Correia11_AO_OptimalControl_Resonant_DM_EJC10.pdf}
}

% 2010
@ARTICLE{raynaud10,
  author = {Raynaud, H.-F. and Correia, C.~M. and Kulcsar, C. and Conan, J.-M.},
  title = {Minimum-variance control of astronomical adaptive optics systems
	with actuator dynamics under synchronous and asynchronous sampling},
  journal = {International Journal of Robust and Nonlinear Control},
  year = {2010},
  month = {May},
  url = {http://onlinelibrary.wiley.com/doi/10.1002/rnc.1625/abstract},
  pdf = {PEER_REVIEWED_PAPERS/3_Raynaud10_MVcontrolAO_synchro_asynchro_IJRNC.pdf},
  date-modified = {2011-02-12 19:08:31 -0800},
  doi = {10.1002/rnc.1625},
  url = {https://doi.org/10.1002/rnc.1625}
}

@ARTICLE{correia10,
  author = {Correia, C.~M. and Raynaud, H.-F. and Kulcsar, C. and Conan, J.-M.},
  title = {On the optimal reconstruction and control of adaptive optical systems
	with mirroir dynamics},
  journal = {J. Opt. Soc. Am. A},
  year = {2010},
  month = {Feb.},
  volume = {27},
  number = {2},
  pages = {333-349},
  url = {http://www.opticsinfobase.org/josaa/abstract.cfm?URI=josaa-27-2-333},
  pdf = {PEER_REVIEWED_PAPERS/2_Correia10_Optimal_RC_MirrorDynamics_JOSAA.pdf},
  date-modified = {2011-02-12 19:07:09 -0800},
  doi = {10.1364/josaa.27.000333},
  url = {https://doi.org/10.1364/josaa.27.000333}
}


%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%%%%%%%%%% Conference Proceedings
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%

% 2026
@INPROCEEDINGS{morujao26,
  author = {{Moruj{\~a}o}, Nuno and {Correia}, Carlos and {Garcia}, Paulo and {Defr{\`e}re}, Denis and {Eisenhauer}, Frank and {Bourdarot}, Guillaume and {Woillez}, Julien and {Laugier}, Romain},
  title = {Towards Unified Vibration Control for the VLTI: Multi-Sensor Data Fusion as a Path Beyond GRAVITY+},
  booktitle = {VLT Beyond 2030},
  year = {2026},
  month = {feb},
  eid = {15},
  pages = {15},
  doi = {10.5281/zenodo.18804032},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2026vltb.confE..15M},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {Zenodo community vlt\_2030}
}

@INPROCEEDINGS{surendran26,
  author = {Surendran, A. and Service, M. and Delorme, J. R. and Correia, C. M. and van Dam, M. A. and Marin, E. and Bouchez, A. and Wizinowich, P. and Chin, J. and Cetre, S. and Ragland, S. and Conod, U. and Taylor, J. and Lilley, S. and Gers, L. and Wetherell, E. and Lu, J. and Stiegler, N. and Pusack, A. and Haggard, Z. and Gauvin, W. and Bernard, J. T. and Pescoller, D. and Biasi, R.},
  title = {On-sky capabilities and performance of the Keck All Sky Precision Adaptive optics system},
  booktitle = {Adaptive Optics Systems X},
  year = {2026},
  volume = {14150},
  series = {SPIE Proceedings},
  pages = {1415004},
  publisher = {SPIE},
  doi = {10.1117/12.3105896},
  url = {http://dx.doi.org/10.1117/12.3105896}
}

@inproceedings{bertram26,
author = {Thomas Bertram and Olivier Absil and Daniel Ahrer and Peter Bizenberger and Bernhard Brandl and Wolfgang Brandner and Florian Briegel and Mar{\'i}a Concepci{\'o}n C{\'a}rdenas V{\'a}zquez and Hugo Coppejans and Carlos Correia and Wim De Meester and Markus Feldt and Armin Huber and Martin Kulas and Werner Laun and Lars Mohr and Vianak Naranjo and Andreas Obereder and Gilles Orban de Xivry and Wim Pessemier and Rapha{\"e}l Pourcelot and Gert Raskin and Ralf-Rainer Rohloff and Silvia Scheithauer and Horst Steuer and Roy van Boekel},
title = {{Putting METIS SCAO to the test}},
volume = {14150},
booktitle = {Adaptive Optics Systems X},
editor = {Kathryn J. Jackson and Dirk Schmidt and Elise Vernet},
organization = {International Society for Optics and Photonics},
publisher = {SPIE},
pages = {141501Z},
keywords = {METIS, ELT, SCAO, Pyramid WFS, Telescope Simulator, AO Control System, MAIT, RTC},
year = {2026},
doi = {10.1117/12.3104055},
URL = {https://doi.org/10.1117/12.3104055}
}



@inproceedings{guzman26,
author = {Dani Guzman and Jon Lawrence and Tiger Wang and Michael Goodwin and Andrew Rakich and Timothy Chin and Jessica Zheng and Lew Waller and Helen McGregor and Zhemin Cai and Ali Ghari Zadeh and Jon Moller and Christopher Coote and Tony Farrell and Summer Luo and Jake Linden and Dylan Simpfendorfer and Max Hewlett and Thierry Fusco and Beno{\^i}t Neichel and Arnaud Striffling and Pierre Jouve and Carlos Correia and Julien Charton and Anne-Sophie Bruni Favier and Julie Magri and Marie Laslandes and Delphine Barbon-Dubosc and Sylvain Cetre and Celia Blain and Gaetano Sivo},
title = {{AOB-WaN: the new adaptive optics bench at Gemini North has completed critical design review}},
volume = {14150},
booktitle = {Adaptive Optics Systems X},
editor = {Kathryn J. Jackson and Dirk Schmidt and Elise Vernet},
organization = {International Society for Optics and Photonics},
publisher = {SPIE},
pages = {141503B},
keywords = {Gemini North AO facility instrument, Laser Tomographic AO instrument, Ground Layer AO instrument},
year = {2026},
doi = {10.1117/12.3104172},
URL = {https://doi.org/10.1117/12.3104172}
}



@INPROCEEDINGS{sousa26,
  author = {Sousa, Lu{\'i}s S. and Correia, Carlos M. and Muzic, Koraljka and Garcia, Paulo J. V.},
  title = {Assessing the astrometric and photometric performance of Starfinder2 in ELT-METIS simulated images},
  booktitle = {Adaptive Optics Systems X},
  year = {2026},
  volume = {14150},
  series = {SPIE Proceedings},
  pages = {141505O},
  publisher = {SPIE},
  doi = {10.1117/12.3105279},
  url = {http://dx.doi.org/10.1117/12.3105279}
}

@INPROCEEDINGS{santos26,
  author = {Santos, Miguel and Sequeira, Ana F. and Correia, Carlos M.},
  title = {Assessing reinforcement learning in XAO control for PCS},
  booktitle = {Adaptive Optics Systems X},
  year = {2026},
  volume = {14150},
  series = {SPIE Proceedings},
  pages = {141505X},
  publisher = {SPIE},
  doi = {10.1117/12.3105261},
  url = {http://dx.doi.org/10.1117/12.3105261}
}

@INPROCEEDINGS{correia26,
  author = {Correia, Carlos M. and Robert, Kyliann and Petit, Cyril and Conan, Jean-Marc},
  title = {Predictive atmospheric models for servo-lag mitigation in frozen-flow-dominated regimes: application to FSOC and HCI},
  booktitle = {Adaptive Optics Systems X},
  year = {2026},
  volume = {14150},
  series = {SPIE Proceedings},
  pages = {141506W},
  publisher = {SPIE},
  doi = {10.1117/12.3105432},
  url = {http://dx.doi.org/10.1117/12.3105432}
}

@INPROCEEDINGS{salgueiro26,
  author = {Salgueiro, Rafael M. and Jouve, Pierre and Oberti, Sylvain and Neichel, Beno{\^{\i}}t and Salama, C{\'{e}}dric Ta{\"{i}}ssir H{\'{e}}ritier and Correia, Carlos M. and Ono, Yoshito H. and Kolb, Johann and Akiyama, Masayuki and Leroux, Fran{\c{c}}ois and Cranney, Jesse and Lawrence, Jon S. and Fusco, Thierry},
  title = {On-sky demonstration of super resolution at the VLT and prospects for Subaru},
  booktitle = {Adaptive Optics Systems X},
  year = {2026},
  volume = {14150},
  series = {SPIE Proceedings},
  pages = {1415008},
  publisher = {SPIE},
  doi = {10.1117/12.3103487},
  url = {http://dx.doi.org/10.1117/12.3103487}
}

@INPROCEEDINGS{berdeu26,
  author = {Berdeu, Anthony and Le Bouquin, Jean-Baptiste and Bonnet, Henri and Oberti, Sylvain and Woillez, Julien and Eisenhauer, Frank and Abuter, Roberto and Amorim, Antonio and Baub{\"{o}}ck, Michi and Brandner, Wolfgang and Cl{\'{e}}net, Yann and de Zeeuw, Tim and Dexter, Jason and Dresden, Frank and Eckart, Andreas and Gao, Feng and Gendron, {\'{E}}ric and Genzel, Reinhard and Gillessen, Stefan and Gordo, Paulo and Habibi, Maryam and Haubois, Xavier and Hei{\ss}ler, Frank and Henning, Thomas and Hippler, Stefan and Horrobin, Matthew and Jimenez-Rosales, Alejandra and Jocou, Laurent and Kervella, Pierre and Lacour, Sylvestre and Lapeyr{\`{e}}re, Vincent and Ott, Thomas and Paumard, Thibaut and Perraut, Karine and Perrin, Guy and Pfuhl, Oliver and Rabien, Sebastian and Rau, Christoph and Rodriguez Coira, Hector and Rousset, G{\'{e}}rard and Scheithauer, Silvia and Shangguan, Jinyi and Stadler, Eric and Straub, Oded and Straubmeier, Christian and Sturm, Eckhard and Tacconi, Linda and Vincent, Frederic and Widmann, Felix},
  title = {Pseudo-synthetic interaction matrix for the GRAVITY+ Adaptive Optics system: modeling and calibration of the ALPAO deformable mirror influence functions and coupling},
  booktitle = {Adaptive Optics Systems X},
  year = {2026},
  volume = {14150},
  series = {SPIE Proceedings},
  pages = {141507Z},
  publisher = {SPIE},
  doi = {10.1117/12.3100827},
  url = {http://dx.doi.org/10.1117/12.3100827}
}

@INPROCEEDINGS{haffert26,
  author = {Haffert, Sebastiaan Y. and Potier, Axel and Leboulleux, Lucie and Wehbe, Bachar and Absil, Olivier and Baudoz, Pierre and Correia, Carlos M. and Feldt, Markus and Galicher, Rapha{\"{e}}l and Huby, Elsa and Kasdin, N. Jeremy and Kenworthy, Matthew and Mazoyer, Johan and N'Diaye, Mamadou and Por, Emiel H. and Sauvage, Jean-Fran{\c{c}}ois and Vigan, Arthur and Wilby, David and van Holstein, David},
  title = {Closing the technology gap for the Extremely Large Telescope's planetary camera and spectrograph (ELT-PCS): development of the coronagraph and focal plane wavefront control strategies},
  booktitle = {Adaptive Optics Systems X},
  year = {2026},
  volume = {14150},
  series = {SPIE Proceedings},
  pages = {141503F},
  publisher = {SPIE},
  doi = {10.1117/12.3105201},
  url = {http://dx.doi.org/10.1117/12.3105201}
}

@INPROCEEDINGS{steuer26,
  author = {Steuer, Horst and Feldt, Markus and Obereder, Andreas and Bertram, Thomas and Briegel, Florian and Coppejans, Hugo and Correia, Carlos and Kulas, Martin and Raffetseder, Stefan and Scheithauer, Silvia},
  title = {Creating an ELT scale command matrix in less than a second for METIS on a consumer grade GPU using Python},
  booktitle = {Adaptive Optics Systems X},
  year = {2026},
  volume = {14150},
  series = {SPIE Proceedings},
  pages = {1415063},
  publisher = {SPIE},
  doi = {10.1117/12.3104956},
  url = {http://dx.doi.org/10.1117/12.3104956}
}

% 2025
@INPROCEEDINGS{dray25,
  author = {{Dray}, Jonathan and {Sinquin}, Baptiste and {Gray}, Morgan and {Neichel}, Benoit and {Ta{\"\i}ssir H{\'e}ritier}, C{\'e}dric and {Correia}, Carlos M. and {Nousiainen}, Jalo and {Fusco}, Thierry and {Petit}, Cyril and {Schimpf}, Armin and {Charton}, Julien},
  title = {Towards IA-based predictive controllers for adaptive optics for LEO and GEO communications},
  booktitle = {International Conference on Space Optics {\textemdash} ICSO 2024},
  year = {2025},
  month = {jul},
  volume = {13699},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {136992L},
  pages = {136992L},
  editor = {{Bernard}, Fr{\'e}d{\'e}ric and {Karafolas}, Nikos and {Kubik}, Philippe and {Minoglou}, Kyriaki},
  doi = {10.1117/12.3072790},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2025SPIE13699E..2LD},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{schwartz25,
  author = {{Schwartz}, Noah and {Harvey}, Douglas and {Harvey}, {\'E}amonn and {Morris}, Katie and {Zhou}, Junyi and {Dumont}, Maxime and {Sauvage}, Jean-Fran{\c{c}}ois and {Correia}, Carlos and {Stephan}, Jay and {Sanchez}, Samuel Pinilla and {Yeung}, Siu-Lun},
  title = {High-resolution Earth observation and astronomy with a compact deployable telescope},
  booktitle = {International Conference on Space Optics {\textemdash} ICSO 2024},
  year = {2025},
  month = {jul},
  volume = {13699},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {136991M},
  pages = {136991M},
  editor = {{Bernard}, Fr{\'e}d{\'e}ric and {Karafolas}, Nikos and {Kubik}, Philippe and {Minoglou}, Kyriaki},
  doi = {10.1117/12.3075151},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2025SPIE13699E..1MS},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

% 2024
@INPROCEEDINGS{silva24,
  author = {{Silva}, Beatriz and {Gomes}, Tiago and {Correia}, Carlos M. and {Garcia}, Paulo J.~V.},
  title = {Advanced visualization of adaptive optics telemetry data},
  booktitle = {Adaptive Optics Systems IX},
  year = {2024},
  month = {aug},
  volume = {13097},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {130977K},
  pages = {130977K},
  editor = {{Jackson}, Kathryn J. and {Schmidt}, Dirk and {Vernet}, Elise},
  doi = {10.1117/12.3020129},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2024SPIE13097E..7KS},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{jouve24,
  author = {{Jouve}, Pierre and {Correia}, Carlos and {Fusco}, Thierry and {Neichel}, Benoit and {Rakich}, Andrew and {Lawrence}, Jon and {Charton}, Julien and {Chin}, Timothy and {Goodwin}, Michael and {Lamb}, Masen and {Sivo}, Gaetano},
  title = {AOB: the new adaptive optics bench at Gemini North},
  booktitle = {Adaptive Optics Systems IX},
  year = {2024},
  month = {aug},
  volume = {13097},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {130976C},
  pages = {130976C},
  editor = {{Jackson}, Kathryn J. and {Schmidt}, Dirk and {Vernet}, Elise},
  doi = {10.1117/12.3019126},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2024SPIE13097E..6CJ},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{marin24,
  author = {{Marin}, Eduardo and {Chin}, Jason C.~Y. and {Cetre}, Sylvain and {Wizinowich}, Peter and {Ragland}, Sam and {Wetherell}, Ed and {Surendran}, Avinash and {Bouchez}, Antonin and {Delorme}, Jacques-Robert and {Lilley}, Scott and {Lyke}, James and {Service}, Maxwell and {Tsubota}, Kevin and {Correia}, Carlos and {van Dam}, Marcos and {Biasi}, Roberto and {Patauner}, Christian and {Pescoller}, Dietrich and {Glazebrook}, Karl and {Jameson}, Andrew and {Gauvin}, Will and {Rigaut}, Francois and {Gratadour}, Damien and {Bernard}, Julien},
  title = {Enabling the next generation of Keck AO with the real time controller upgrade},
  booktitle = {Adaptive Optics Systems IX},
  year = {2024},
  month = {aug},
  volume = {13097},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {1309760},
  pages = {1309760},
  editor = {{Jackson}, Kathryn J. and {Schmidt}, Dirk and {Vernet}, Elise},
  doi = {10.1117/12.3016792},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2024SPIE13097E..60M},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{steuer24,
  author = {{Steuer}, Horst and {Feldt}, Markus and {Bertram}, Thomas and {Correia}, Carlos M. and {Obereder}, Andreas and {Coppejans}, Hugo and {Kulas}, Martin and {Scheithauer}, Silvia and {Cardenas Vazquez}, M. Concepci{\'o}n and {Mortimer}, Daniel and {Orban de Xivry}, Gilles and {Absil}, Olivier},
  title = {Evolving the METIS soft real-time control system out of the simulation environment},
  booktitle = {Adaptive Optics Systems IX},
  year = {2024},
  month = {aug},
  volume = {13097},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {130974L},
  pages = {130974L},
  editor = {{Jackson}, Kathryn J. and {Schmidt}, Dirk and {Vernet}, Elise},
  doi = {10.1117/12.3018227},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2024SPIE13097E..4LS},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{lamb24,
  author = {{Lamb}, Masen and {Sivo}, Gaetano and {Sivanandam}, Suresh and {Tschimmel}, Martin and {Scharw{\"a}chter}, Julia and {McConnachie}, Alan and {Muzzin}, Adam and {Jouve}, Pierre and {Correia}, Carlos},
  title = {Performance update of the combined GNAO+GIRMOS imaging system based on the newly-derived adaptive optics bench},
  booktitle = {Adaptive Optics Systems IX},
  year = {2024},
  month = {aug},
  volume = {13097},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {130973C},
  pages = {130973C},
  editor = {{Jackson}, Kathryn J. and {Schmidt}, Dirk and {Vernet}, Elise},
  doi = {10.1117/12.3019232},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2024SPIE13097E..3CL},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{neichel24,
  author = {{Neichel}, Benoit and {Agapito}, Guido and {Kuznetsov}, Arseniy and {Rossi}, Fabio and {Plantet}, C{\'e}dric and {Manara}, Carlo F. and {F{\'e}tick}, Romain and {Concas}, Alice and {Vernet}, Jo{\"e}l. and {Hainaut}, Olivier and {Cheffot}, Anne-Laure and {Carl{\`a}}, Giulia and {Sauvage}, Jean-Fran{\c{c}}ois and {Cirasuolo}, Michele and {Padovani}, Paolo and {Correia}, Carlos and {H{\'e}ritier}, Cedric Taissir and {Fusco}, Thierry},
  title = {TipTop: toward a single tool for all ELT instrument's PSF prediction},
  booktitle = {Adaptive Optics Systems IX},
  year = {2024},
  month = {aug},
  volume = {13097},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {130972Y},
  pages = {130972Y},
  editor = {{Jackson}, Kathryn J. and {Schmidt}, Dirk and {Vernet}, Elise},
  doi = {10.1117/12.3015061},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2024SPIE13097E..2YN},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{morujao24,
  author = {{Moruj{\~a}o}, Nuno and {Correia}, Carlos M. and {Garcia}, Paulo},
  title = {Detecting stationarity duration in the atmosphere},
  booktitle = {Adaptive Optics Systems IX},
  year = {2024},
  month = {aug},
  volume = {13097},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {130972V},
  pages = {130972V},
  editor = {{Jackson}, Kathryn J. and {Schmidt}, Dirk and {Vernet}, Elise},
  doi = {10.1117/12.3020316},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2024SPIE13097E..2VM},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{bertram24,
  author = {{Bertram}, Thomas and {Absil}, Olivier and {Bizenberger}, Peter and {Brandl}, Bernhard and {Brandner}, Wolfgang and {Briegel}, Florian and {C{\'a}rdenas V{\'a}zquez}, Mar{\'\i}a. Concepci{\'o}n and {Coppejans}, Hugo and {Correia}, Carlos and {Feldt}, Markus and {H{\"a}berle}, Maximilian and {Huber}, Armin and {Kulas}, Martin and {Laun}, Werner and {Mohr}, Lars and {Mortimer}, Daniel and {Naranjo}, Vianak and {Obereder}, Andreas and {Orban de Xivry}, Gilles and {Rohloff}, Ralf-Rainer and {Scheithauer}, Silvia and {Steuer}, Horst and {van Boekel}, Roy},
  title = {How to make METIS SCAO work},
  booktitle = {Adaptive Optics Systems IX},
  year = {2024},
  month = {aug},
  volume = {13097},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {1309727},
  pages = {1309727},
  editor = {{Jackson}, Kathryn J. and {Schmidt}, Dirk and {Vernet}, Elise},
  doi = {10.1117/12.3019877},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2024SPIE13097E..27B},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{verinaud24a,
  author = {{V{\'e}rinaud}, Christophe and {H{\'e}ritier}, C{\'e}dric Ta{\"\i}ssir and {Kasper}, Markus and {Haffert}, Sebastiaan and {Snik}, Frans and {Doelman}, David and {Carlotti}, Alexis and {Engler}, Byron and {Le Louarn}, Miska and {Correia}, Carlos and {Tallon}, Michel},
  title = {The Bi-O edge sensor: from theory to practice},
  booktitle = {Adaptive Optics Systems IX},
  year = {2024},
  month = {aug},
  volume = {13097},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {130971V},
  pages = {130971V},
  editor = {{Jackson}, Kathryn J. and {Schmidt}, Dirk and {Vernet}, Elise},
  doi = {10.1117/12.3019958},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2024SPIE13097E..1VV},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{wizinowich24,
  author = {{Wizinowich}, P. and {Bouchez}, A. and {Marin}, E. and {Cetre}, S. and {Chin}, J. and {Correia}, C. and {van Dam}, M. and {Delorme}, J.-R. and {Gers}, L. and {Guthery}, C. and {Karkar}, S. and {Kwok}, S. and {Lilley}, S. and {Lyke}, J. and {Richards}, P. and {Service}, M. and {Steiner}, J. and {Surendran}, A. and {Tsubota}, K. and {Wetherell}, E. and {Bottom}, M. and {Dekany}, R. and {Ghez}, A. and {Hinz}, P. and {Liu}, M. and {Lu}, J. and {Jensen-Clem}, R. and {Millar-Blanchaer}, M. and {Peretz}, E. and {Sallum}, S. and {Treu}, T. and {Wright}, S.},
  title = {Adaptive optics at W. M. Keck Observatory},
  booktitle = {Adaptive Optics Systems IX},
  year = {2024},
  month = {aug},
  volume = {13097},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {130970K},
  pages = {130970K},
  editor = {{Jackson}, Kathryn J. and {Schmidt}, Dirk and {Vernet}, Elise},
  doi = {10.1117/12.3017853},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2024SPIE13097E..0KW},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{janinpotiron24,
  author = {{Janin-Potiron}, P. and {Ca{\~n}ameras}, R. and {Neichel}, B. and {Gray}, M. and {Marchis}, F. and {Lambert}, R. and {Quere}, F. and {Blaclard}, G. and {Malvache}, A. and {Beltramo-Martin}, O. and {Cantegreil}, J. and {Boutte}, P. and {Zancanaro}, Y. and {Gervail}, A. and {Correia}, C.~M.},
  title = {Enhancing space surveillance through the Unistellar collaborative observation program},
  booktitle = {Ground-based and Airborne Telescopes X},
  year = {2024},
  month = {aug},
  volume = {13094},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {1309455},
  pages = {1309455},
  editor = {{Marshall}, Heather K. and {Spyromilio}, Jason and {Usuda}, Tomonori},
  doi = {10.1117/12.3018639},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2024SPIE13094E..55J},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{coppejans24,
  author = {{Coppejans}, Hugo and {Bertram}, Thomas and {Briegel}, Florian and {Feldt}, Markus and {Kulas}, Martin and {Scheithauer}, Silvia and {Correia}, Carlos and {Obereder}, Andreas},
  title = {METIS RTC as a computationally heavy system},
  booktitle = {Software and Cyberinfrastructure for Astronomy VIII},
  year = {2024},
  month = {jul},
  volume = {13101},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {131013V},
  pages = {131013V},
  editor = {{Ibsen}, Jorge and {Chiozzi}, Gianluca},
  doi = {10.1117/12.3020018},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2024SPIE13101E..3VC},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{kulas24,
  author = {{Kulas}, Martin and {Absil}, Oliver and {Bertram}, Thomas and {Briegel}, Florian and {Coppejans}, Hugo and {Correia}, Carlos and {De Meester}, Wim and {Feldt}, Markus and {Naranjo}, Vianak and {Obereder}, Andreas and {Orban de Xivry}, Gilles and {Steuer}, Horst},
  title = {METIS AOCS at the beginning of MAIT},
  booktitle = {Software and Cyberinfrastructure for Astronomy VIII},
  year = {2024},
  month = {jul},
  volume = {13101},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {131013U},
  pages = {131013U},
  editor = {{Ibsen}, Jorge and {Chiozzi}, Gianluca},
  doi = {10.1117/12.3019974},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2024SPIE13101E..3UK},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{dray24,
  author = {Dray, Jonathan and Sinquin, Baptiste and Gray, Morgan and Neichel, Beno{\^{\i}}t and H{\'{e}}ritier, C{\'{e}}dric Ta{\"{i}}ssir and Correia, Carlos M. and Camelo, Raissa and Nousiainen, Jalo and Fusco, Thierry and Petit, Cyril and Schimpf, Armin and Charton, Julien},
  title = {Comparison of predictive control laws in adaptive optics for free-space optical communications},
  booktitle = {Adaptive Optics Systems IX},
  year = {2024},
  volume = {13097},
  series = {SPIE Proceedings},
  pages = {130977W},
  publisher = {SPIE},
  doi = {10.1117/12.3019728},
  url = {http://dx.doi.org/10.1117/12.3019728}
}

% 2023

@INPROCEEDINGS{taissirheritier23,
  author = {{Taissir Heritier}, Cedric and {Verinaud}, Christophe and {Correia}, Carlos M.},
  title = {OOPAO: Object Oriented Python Adaptive Optics},
  booktitle = {Adaptive Optics for Extremely Large Telescopes (AO4ELT7)},
  year = {2023},
  month = {jun},
  eid = {50},
  pages = {50},
  doi = {10.13009/AO4ELT7-2023-052},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2023aoel.confE..50T},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {Adaptive Optics, Python, Numerical modelling}
}

@INPROCEEDINGS{obereder23,
  author = {{Obereder}, Andreas and {Shatokhina}, Iuliia and {Raffetseder}, Stefan and {Feldt}, Markus and {Steuer}, Horst and {Bertram}, Thomas and {Correia}, Carlos},
  title = {Finally, let's use all the modes - A stable DM fitting avoiding modal truncation},
  booktitle = {Adaptive Optics for Extremely Large Telescopes (AO4ELT7)},
  year = {2023},
  month = {jun},
  eid = {40},
  pages = {40},
  doi = {10.13009/AO4ELT7-2023-041},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2023aoel.confE..40O},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {DM projection, Wavefront Control, Adaptive Optics, Regularisation, METIS, SCAO}
}

@INPROCEEDINGS{kulas23,
  author = {{Kulas}, Martin and {Hugo}, Coppejans and {Steuer}, Horst and {Bertram}, Thomas and {Correia}, Carlos and {Philip}, Neureuther and {Briegel}, Florian},
  title = {The Rtc for Metis Scao},
  booktitle = {Adaptive Optics for Extremely Large Telescopes (AO4ELT7)},
  year = {2023},
  month = {jun},
  eid = {27},
  pages = {27},
  doi = {10.13009/AO4ELT7-2023-028},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2023aoel.confE..27K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {ELT, METIS, Adaptive Optics, Real, Time computer, RTC, Graphics processing unit, GPU}
}

@INPROCEEDINGS{wizinowich23,
  author = {{Wizinowich}, Peter and {Cetre}, Sylvain and {Chin}, Jason and {Correia}, Carlos and {Gers}, Luke and {Guthery}, Charlotte and {Karkar}, Sonia and {Kwok}, Shui Hung and {Lilleya}, Scott and {Lyke}, Jim and {Marin}, Eduardo and {Raglanda}, Sam and {Richards}, Paul and {Service}, Max and {Surendran}, Avinash and {Tsubota}, Kevin and {Wetherell}, Ed and {Bottom}, Michael and {Chund}, Mark and {Dekany}, Richard and {Dof}, Tuan and {Fassnacht}, Chris and {Fitzgerald}, Michael and {Ghez}, Andrea and {Hinzh}, Phil and {Jensen-Clem}, Becky and {Jones}, Tucker and {De Kleer}, Katherine and {Liu}, Michael C. and {Luk}, Jessica and {Mather}, John and {Mawet}, Dimitri and {Millar-Blanchaer}, Maxwell and {Pasquale}, Bert and {Peretz}, Eliad and {Sallum}, Steph and {Treu}, Tommaso and {Wright}, Shelley and {Correia}, Carlos and {Gers}, Luke and {Guthery}, Charlotte and {Karkar}, Sonia and {Kwok}, Shui Hung and {Lilleya}, Scott and {Lyke}, Jim and {Marin}, Eduardo and {Raglanda}, Sam and {Richards}, Paul and {Service}, Max and {Surendran}, Avinash and {Tsubota}, Kevin and {Wetherell}, Ed and {Bottom}, Michael and {Chund}, Mark and {Dekany}, Richard and {Dof}, Tuan and {Fassnacht}, Chris and {Fitzgerald}, Michael and {Ghez}, Andrea and {Hinzh}, Phil and {Jensen-Clem}, Becky and {Jones}, Tucker and {De Kleer}, Katherine and {Liu}, Michael C. and {Luk}, Jessica and {Mather}, John and {Mawet}, Dimitri and {Millar-Blanchaer}, Maxwell and {Pasquale}, Bert and {Peretz}, Eliad and {Sallum}, Steph and {Treu}, Tommaso and {Wright}, Shelley and {Correia}, Carlos and {Gers}, Luke and {Guthery}, Charlotte and {Karkar}, Sonia and {Kwok}, Shui Hung and {Lilleya}, Scott and {Lyke}, Jim and {Marin}, Eduardo and {Raglanda}, Sam and {Richards}, Paul and {Service}, Max and {Surendran}, Avinash and {Tsubota}, Kevin and {Wetherell}, Ed and {Bottom}, Michael and {Chund}, Mark and {Dekany}, Richard and {Dof}, Tuan and {Fassnacht}, Chris and {Fitzgerald}, Michael and {Ghez}, Andrea and {Hinzh}, Phil and {Jensen-Clem}, Becky and {Jones}, Tucker and {De Kleer}, Katherine and {Liu}, Michael C. and {Luk}, Jessica and {Mather}, John and {Mawet}, Dimitri and {Millar-Blanchaer}, Maxwell and {Pasquale}, Bert and {Peretz}, Eliad and {Sallum}, Steph and {Treu}, Tommaso and {Wright}, Shelley},
  title = {Keck Adaptive Optics Current and Future Roles as an ELT Pathfinder},
  booktitle = {Adaptive Optics for Extremely Large Telescopes (AO4ELT7)},
  year = {2023},
  month = {jun},
  eid = {8},
  pages = {8},
  doi = {10.13009/AO4ELT7-2023-009},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2023aoel.confE...8W},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {Adaptive optics, Real, Time control, Wavefront sensing, Phasing, Segmented mirrors, ORCAS}
}

@INPROCEEDINGS{feldtfeldt23,
  author = {{Feldt Feldt}, Markus and {Steuer}, Horst and {Correia}, Carlos and {Obereder}, Andreas and {Raffetseder}, Stefan and {Bertram}, Thomas and {Shatokhina}, Julia and {Cantalloube}, Faustine},
  title = {Simulating METIS' SCAO System},
  booktitle = {Adaptive Optics for Extremely Large Telescopes (AO4ELT7)},
  year = {2023},
  month = {jun},
  eid = {6},
  pages = {6},
  doi = {10.13009/AO4ELT7-2023-007},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2023aoel.confE...6F},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {METIS SCAO PWFS COMPASS Simulation Low wind effect, METIS, SCAO, PWFS, COMPASS, Simulation, Low, Wind effect}
}

% 2022
@INPROCEEDINGS{pourre22a,
  author = {{Pourr{\'e}}, Nicolas and {Le Bouquin}, Jean Baptiste and {Milli}, Julien and {Sauvage}, Jean-Fran{\c{c}}ois and {Fusco}, Thierry and {Correia}, Carlos and {Oberti}, Sylvain},
  title = {Understand and correct for the low wind effect on the SPHERE and GRAVITY+ adaptive optics},
  booktitle = {Adaptive Optics Systems VIII},
  year = {2022},
  month = {aug},
  volume = {12185},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {121855C},
  pages = {121855C},
  editor = {{Schreiber}, Laura and {Schmidt}, Dirk and {Vernet}, Elise},
  doi = {10.1117/12.2629793},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2022SPIE12185E..5CP},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{chapman22,
  author = {{Chapman}, Scott C. and {Conod}, Uriel and {Turri}, Paolo and {Jackson}, Kate and {Lardiere}, Olivier and {Sivanandam}, Suresh and {Andersen}, David and {Correia}, Carlos and {Lamb}, Masen and {Ross}, Colin and {Sivo}, Gaetano and {Veran}, Jean-Pierre},
  title = {The multi-object adaptive optics system for the Gemini Infra-Red Multi-Object Spectrograph},
  booktitle = {Adaptive Optics Systems VIII},
  year = {2022},
  month = {aug},
  volume = {12185},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {121853F},
  pages = {121853F},
  editor = {{Schreiber}, Laura and {Schmidt}, Dirk and {Vernet}, Elise},
  doi = {10.1117/12.2630645},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2022SPIE12185E..3FC},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{kuznetsov22,
  author = {{Kuznetsov}, Arseniy and {Oberti}, Sylvain and {Heritier}, Cedric Ta{\"\i}ssir and {Plantet}, C{\'e}dric and {Neichel}, Beno{\^\i}t and {Fusco}, Thierry and {Str{\"o}bele}, Stefan and {Correia}, Carlos},
  title = {Study of the LIFT focal-plane wavefront sensor for GALACSI NFM},
  booktitle = {Adaptive Optics Systems VIII},
  year = {2022},
  month = {aug},
  volume = {12185},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {1218531},
  pages = {1218531},
  editor = {{Schreiber}, Laura and {Schmidt}, Dirk and {Vernet}, Elise},
  doi = {10.1117/12.2628588},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2022SPIE12185E..31K},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{surendran22,
  author = {{Surendran}, Avinash and {Delorme}, Jacques R. and {Correia}, Carlos M. and {Doyle}, Steve and {Ragland}, Sam and {Richards}, Paul and {Wizinowich}, Peter and {Hinz}, Philip M. and {Dillon}, Daren and {Laguna}, Cesar and {Cetre}, Sylvain and {Lilley}, Scott and {Wetherell}, Ed and {Chin}, Jason C.~Y. and {Marin}, Eduardo},
  title = {Daytime calibration and testing of the Keck All sky Precision Adaptive optics tomography system},
  booktitle = {Adaptive Optics Systems VIII},
  year = {2022},
  month = {aug},
  volume = {12185},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {121851V},
  pages = {121851V},
  editor = {{Schreiber}, Laura and {Schmidt}, Dirk and {Vernet}, Elise},
  doi = {10.1117/12.2628264},
  eprint = {2207.14433},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2022SPIE12185E..1VS},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {Astrophysics - Instrumentation and Methods for Astrophysics}
}

@INPROCEEDINGS{bond22,
  author = {{Bond}, Charlotte Z. and {Sauvage}, Jean-Fran{\c{c}}ois and {Schwartz}, Noah and {Levraud}, Nicolas and {Chambouleyron}, Vincent and {Correia}, Carlos and {Fusco}, Thierry and {Neichel}, Benoit},
  title = {HARMONI at ELT: wavefront control in SCAO mode},
  booktitle = {Adaptive Optics Systems VIII},
  year = {2022},
  month = {aug},
  volume = {12185},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {121851B},
  pages = {121851B},
  editor = {{Schreiber}, Laura and {Schmidt}, Dirk and {Vernet}, Elise},
  doi = {10.1117/12.2627713},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2022SPIE12185E..1BB},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{correia22a,
  author = {{Correia}, Carlos M. and {Feldt}, Markus and {Steuer}, Horst and {Shatokhina}, Julia and {Obereder}, Andreas and {Neureuther}, Philip and {Kulas}, Martin and {Coppejans}, Hugo and {Orban de Xivry}, Gilles and {Scheithauer}, Silvia and {Bertram}, Thomas},
  title = {ELT METIS wavefront control strategy},
  booktitle = {Adaptive Optics Systems VIII},
  year = {2022},
  month = {aug},
  volume = {12185},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {1218512},
  pages = {1218512},
  editor = {{Schreiber}, Laura and {Schmidt}, Dirk and {Vernet}, Elise},
  doi = {10.1117/12.2630096},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2022SPIE12185E..12C},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{chin22,
  author = {{Chin}, Jason C.~Y. and {Cetre}, S. and {Wizinowich}, P. and {Ragland}, S. and {Lilley}, S. and {Wetherell}, E. and {Surendran}, A. and {Correia}, C. and {Marin}, E. and {Biasi}, R. and {Pataunar}, C. and {Pescoller}, D. and {Glazebrook}, K. and {Jameson}, A. and {Gauvin}, W. and {Rigaut}, F. and {Gratadour}, D. and {Bernard}, J.},
  title = {Keck adaptive optics facility: real time controller upgrade},
  booktitle = {Adaptive Optics Systems VIII},
  year = {2022},
  month = {aug},
  volume = {12185},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {121850V},
  pages = {121850V},
  editor = {{Schreiber}, Laura and {Schmidt}, Dirk and {Vernet}, Elise},
  doi = {10.1117/12.2629614},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2022SPIE12185E..0VC},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{wizinowich22,
  author = {{Wizinowich}, P. and {Lu}, J.~R. and {Cetre}, S. and {Chin}, J. and {Correia}, C. and {Delorme}, J.-R. and {Gers}, L. and {Lilley}, S. and {Lyke}, J. and {Marin}, E. and {Ragland}, S. and {Richards}, P. and {Surendran}, A. and {Wetherell}, E. and {Chen}, C.-F. and {Chu}, D. and {Do}, T. and {Fassnacht}, C. and {Freeman}, M. and {Gautam}, A. and {Ghez}, A. and {Hunter}, L. and {Jones}, T. and {Liu}, M.~C. and {Mawet}, D. and {Max}, C. and {Morris}, M. and {Phillips}, M. and {Ruffio}, J.-B. and {Rundquist}, N.-E. and {Sabhlok}, S. and {Terry}, S. and {Treu}, T. and {Wright}, S.},
  title = {Keck All sky Precision Adaptive optics program overview},
  booktitle = {Adaptive Optics Systems VIII},
  year = {2022},
  month = {aug},
  volume = {12185},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {121850Q},
  pages = {121850Q},
  editor = {{Schreiber}, Laura and {Schmidt}, Dirk and {Vernet}, Elise},
  doi = {10.1117/12.2628275},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2022SPIE12185E..0QW},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{gomes22,
  author = {{Gomes}, Tiago and {Correia}, Carlos and {Bardou}, Lisa and {Beltramo-Martin}, Olivier and {Fusco}, Thierry and {Kulcs{\'a}r}, Caroline and {Morris}, Timothy and {Moruj{\~a}o}, Nuno and {Neichel}, Beno{\^\i}t and {Osborn}, James and {Garcia}, Paulo},
  title = {Towards virtual access of adaptive optics telemetry data},
  booktitle = {Adaptive Optics Systems VIII},
  year = {2022},
  month = {aug},
  volume = {12185},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {121850H},
  pages = {121850H},
  editor = {{Schreiber}, Laura and {Schmidt}, Dirk and {Vernet}, Elise},
  doi = {10.1117/12.2630214},
  eprint = {2207.14344},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2022SPIE12185E..0HG},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {Astrophysics - Instrumentation and Methods for Astrophysics}
}

@INPROCEEDINGS{thatte22,
  author = {{Thatte}, Niranjan A. and {Melotte}, Dave and {Neichel}, Benoit and {Le Mignant}, David and {Bryson}, Ian and {Clarke}, Fraser and {Ferraro-Wood}, Vanessa and {Fusco}, Thierry and {Gonzalez}, Oscar and {Schnetler}, Hermine and {Tecza}, Matthias and {Wilson}, Sandi and {{\'A}lvarez Urue{\~n}a}, Alonso and {Vilaseca}, Heribert A. and {Arribas}, Santiago and {Carracedo Carballale}, Gonzalo Jos{\'e} and {Crespo}, Alejandro and {Estrada Piqueras}, Alberto and {Garc{\'\i}a Garc{\'\i}a}, Miriam and {Mart{\'\i}nez Mart{\'\i}n}, Cecilai and {Pereira Santaella}, Miguel and {Perna}, Michele and {Piqueras Lopez}, Javier and {Bouch{\'e}}, Niolas and {Boudon}, Didier and {Daguise}, Eric and {Disseau}, Karen and {Fensch}, J{\'e}r{\'e}my J. and {Girardot}, Adrien and {Guibert}, Matthieu and {Jarno}, Aur{\'e}lien and {Jeanneau}, Alexandre and {Krogager}, Jens-Kristian and {Laurent}, Florence and {Loupias}, Magali and {Migniau}, Jean-Emmanuel and {Piqueras}, Laure and {Remillieux}, Alban and {Richard}, Johan and {Pecontal}, Arlette and {Bardou}, Lisa F. and {Barr}, David and {Cetre}, Sylvain and {Deshmukh}, Rishi and {Dimoudi}, Sofia and {Dubbledam}, Marc and {Dunn}, Andrew and {Gadotti}, Dimitri and {Guy}, Joss J. and {King}, David and {Little}, David J. and {McLeod}, Anna and {Morris}, Simon and {Morris}, Tim and {O'Brien}, Kieran S. and {Ronson}, Emily and {Smith}, Russell and {Staykov}, Lazar and {Swinbank}, Mark and {Townson}, Matthew and {Accardo}, Matteo and {Alvarez Mendez}, Domingo and {George}, Elizabeth and {Hopgood}, Joshua and {Ives}, Derek and {Mehrgan}, Leander and {Mueller}, Eric and {Reyes}, Javier and {Conzelmann}, Ralf and {Gutierrez Cheetham}, Pablo and {Alonso-S{\'a}nchez}, {\'A}ngel and {Battaglia}, Giuseppina and {Cagigas}, Miguel and {Chulani}, Haresh and {Delgado Garc{\'\i}a}, Graciela and {Fernandez Izquierdo}, Patricia and {Fragoso L{\'o}pez}, Ana Bel{\'e}n. and {Garc{\'\i}a-Lorenzo}, Bego{\~n}a. and {Hern{\'a}ndez Gonz{\'a}lez}, Alberto and {Hernandez Suarez}, Elvio and {Herreros Linares}, Jose Miguel and {Joven}, Enrique and {L{\'o}pez L{\'o}pez}, Roberto and {Lujan Gonzalez}, Alejandro Antonio and {Mart{\'\i}n Hernando}, Yolanda and {Mediavilla}, Evencio and {Men{\'e}ndez Mendoza}, Sa{\'u}l and {Montoya Mart{\'\i}nez}, Luz Maria and {Pe{\~n}ate Castro}, Jos{\'e} and {P{\'e}rez}, {\'A}lvaro and {Rasilla}, Jose Luis and {Rebolo}, Rafael and {Rodr{\'\i}guez Ramos}, Luis Fernando and {Vega-Moreno}, Afrodisio and {Viera}, Teodora and {Zanon Dametto}, Natacha and {Carlotti}, Alexis and {Correia}, Jean-Jacques and {Curaba}, St{\'e}phane and {Delboulbe}, Alain and {Guieu}, Sylvain and {Hours}, Adrien and {Hubert}, Zoltan and {Jocou}, Laurent and {Magnard}, Yves and {Moulin}, Thibaut and {Pancher}, Fabrice and {Rabou}, Patrick and {Stadler}, Eric and {V{\'e}rove}, Maxime and {Contini}, Thierry and {Larrieu}, Marie and {Boebion}, Olivier and {Fantei-Caujolle}, Yan and {Lecron}, Daniel and {Rousseau}, Sylvain and {Amram}, Philippe and {Beltramo-Martin}, Olivier and {Bon}, William and {Bonnefoi}, Anne and {Ceria}, William and {Challita}, Zalpha and {Charles}, Yannick and {Choquet}, Elodie and {Correia}, Carlos and {Costille}, Anne and {Dohlen}, Kjetil and {Ducret}, Franck and {El Hadi}, Kacem and {Gach}, Jean-Luc and {Gimenez}, Jean-Luc and {Groussin}, Olivier and {Jaquet}, Marc and {Jouve}, Pierre and {Madec}, Fabrice and {Pedreros}, Felipe and {Renault}, Edgard and {Sanchez}, Patrice and {Vigan}, Arthur and {Vola}, Pascal and {Zavago}, Annie and {Fetick}, Romain and {Lim}, Caroline and {Petit}, Cyril and {Sauvage}, Jean-Francois and {V{\'e}drenne}, Nicolas and {Bagci}, Fehim Taha and {Caldwell}, Martin E. and {Elliott}, Ellis and {Hiscock}, Peter and {Johnson}, Emma and {Nalagatla}, Murali and {Seitis}, Aristea and {Wells}, Mark and {Black}, Martin and {Bond}, Charlotte and {Brierley}, Saskia and {Campbell}, Kenny and {Campbell}, Neil and {Carruthers}, James and {Cochrane}, William and {Evans}, Chris and {Harman}, Joel and {Humphreys}, William and {Louth}, Thomas and {Miller}, Chris and {Montgomery}, David and {Murali}, Meenu and {Murray}, John and {O'Malley}, Norman and {Sanchez-Janssen}, Ruben and {Schwartz}, Noah and {Smith}, Patrick and {Strachan}, Jonathan and {Todd}, Stephen and {Watt}, Stuart and {Wells}, Martyn and {Yaqoob}, Asim and {Bell}, Eric and {Gnedin}, Oleg O. and {Gultekin}, Kayhan and {Mateo}, Mario and {Meyer}, Michael and {Ahmad}, Munadi and {Birkby}, Jayne and {Booth}, Michael and {Cappellari}, Michele and {Castillo Dominguez}, Edgar and {Chao Ortiz}, Jorge and {Gooding}, David and {Grisdale}, Kearn and {Hidalgo}, Andrea and {Hogan}, Laurence and {Kariuki}, James and {Lewis}, Ian and {Lowe}, Adam and {Ozer}, Zeynep and {Routledge}, Laurence and {Rigopoulou}, Dimitra and {York}, Alec},
  title = {HARMONI at ELT: overview of the capabilities and expected performance of the ELT's first light, adaptive optics assisted integral field spectrograph.},
  booktitle = {Ground-based and Airborne Instrumentation for Astronomy IX},
  year = {2022},
  month = {aug},
  volume = {12184},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {1218420},
  pages = {1218420},
  editor = {{Evans}, Christopher J. and {Bryant}, Julia J. and {Motohara}, Kentaro},
  doi = {10.1117/12.2628834},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2022SPIE12184E..20T},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{dumont22,
  author = {{Dumont}, Maxime and {Correia}, Carlos and {Sauvage}, Jean-Fran{\c{c}}ois and {Schwartz}, Noah and {Gray}, Morgan and {Beltramo-Martin}, Olivier and {Cardoso}, Jaime},
  title = {Deep learning for space-borne focal-plane wavefront sensing},
  booktitle = {Space Telescopes and Instrumentation 2022: Optical, Infrared, and Millimeter Wave},
  year = {2022},
  month = {aug},
  volume = {12180},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {1218034},
  pages = {1218034},
  editor = {{Coyle}, Laura E. and {Matsuura}, Shuji and {Perrin}, Marshall D.},
  doi = {10.1117/12.2628868},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2022SPIE12180E..34D},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{schwartz22,
  author = {{Schwartz}, Noah and {Brzozowski}, William and {Ali}, Zeshan and {Milanova}, Maria and {Morris}, Katherine and {Bond}, Charlotte and {Keogh}, Jennifer and {Harvey}, Douglas and {Bissell}, Lawrence and {Sauvage}, Jean-Fran{\c{c}}ois and {Dumont}, Maxime and {Correia}, Carlos and {Rees}, Phil and {Bruce}, Heather},
  title = {6U CubeSat deployable telescope for optical Earth observation and astronomical optical imaging},
  booktitle = {Space Telescopes and Instrumentation 2022: Optical, Infrared, and Millimeter Wave},
  year = {2022},
  month = {aug},
  volume = {12180},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {1218031},
  pages = {1218031},
  editor = {{Coyle}, Laura E. and {Matsuura}, Shuji and {Perrin}, Marshall D.},
  doi = {10.1117/12.2627248},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2022SPIE12180E..31S},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

% 2020
@INPROCEEDINGS{chapman20,
  author = {{Chapman}, Scott C. and {Conod}, Uriel and {Turri}, Paolo and {Jackson}, Kate and {Lardiere}, Olivier and {Sivanandam}, Suresh and {Andersen}, David and {Correia}, Carlos and {Lamb}, Masen and {Ross}, Colin and {Sivo}, Gaetano and {Veran}, Jean-Pierre},
  title = {The multi-object adaptive optics system for the Gemini infra-red multi-object spectrograph},
  booktitle = {Adaptive Optics Systems VII},
  year = {2020},
  month = {dec},
  volume = {11448},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {1144872},
  pages = {1144872},
  editor = {{Schreiber}, Laura and {Schmidt}, Dirk and {Vernet}, Elise},
  doi = {10.1117/12.2562793},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2020SPIE11448E..72C},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{morris20,
  author = {{Morris}, T. and {Osborn}, J. and {Reyes}, M. and {Montilla}, I. and {Rousset}, G. and {Gendron}, E. and {Fusco}, T. and {Neichel}, B. and {Esposito}, S. and {Garcia}, P.~J.~V. and {Kulcsar}, C. and {Correia}, C. and {Beuzit}, J.-L. and {Bharmal}, N.~A. and {Bardou}, L. and {Staykov}, L. and {Bonaccini Calia}, D.},
  title = {The ORP on-sky community access program for adaptive optics instrumentation development},
  booktitle = {Adaptive Optics Systems VII},
  year = {2020},
  month = {dec},
  volume = {11448},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {114485H},
  pages = {114485H},
  editor = {{Schreiber}, Laura and {Schmidt}, Dirk and {Vernet}, Elise},
  doi = {10.1117/12.2562805},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2020SPIE11448E..5HM},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{wizinowich20,
  author = {{Wizinowich}, P. and {Chin}, J. and {Correia}, C. and {Lu}, J. and {Brown}, T. and {Casey}, K. and {Cetre}, S. and {Delorme}, J.-R. and {Gers}, L. and {Hunter}, L. and {Lilley}, S. and {Ragland}, S. and {Surendran}, A. and {Wetherell}, E. and {Ghez}, A. and {Do}, T. and {Jones}, T. and {Liu}, M. and {Mawet}, D. and {Max}, C. and {Morris}, M. and {Treu}, T. and {Wright}, S.},
  title = {Keck all sky precision adaptive optics},
  booktitle = {Adaptive Optics Systems VII},
  year = {2020},
  month = {dec},
  volume = {11448},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {114480E},
  pages = {114480E},
  editor = {{Schreiber}, Laura and {Schmidt}, Dirk and {Vernet}, Elise},
  doi = {10.1117/12.2560017},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2020SPIE11448E..0EW},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{beltramomartin20,
  author = {{Beltramo-Martin}, O. and {Ragland}, S. and {F{\'e}tick}, R. and {Correia}, C. and {Dupuy}, T. and {Fiorentino}, G. and {Fusco}, T. and {Jolissaint}, L. and {Kamann}, S. and {Marasco}, A. and {Massari}, D. and {Neichel}, B. and {Schreiber}, L. and {Wizinowich}, P.},
  title = {Review of PSF reconstruction methods and application to post-processing},
  booktitle = {Adaptive Optics Systems VII},
  year = {2020},
  month = {dec},
  volume = {11448},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {114480A},
  pages = {114480A},
  editor = {{Schreiber}, Laura and {Schmidt}, Dirk and {Vernet}, Elise},
  doi = {10.1117/12.2560805},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2020SPIE11448E..0AB},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{thatte20,
  author = {{Thatte}, Niranjan A. and {Bryson}, Ian and {Clarke}, Fraser and {Ferraro-Wood}, Vanessa and {Fusco}, Thierry and {Le Mignant}, David and {Melotte}, Dave and {Neichel}, Benoit and {Schnetler}, Hermine and {Tecza}, Matthias and {Arribas}, Santiago and {Crespo}, Alejandro and {Estrada Piqueras}, Alberto and {Garc{\'\i}a Garc{\'\i}a}, Miriam and {Pereira Santaella}, Miguel and {Piqueras L{\'o}pez}, Javier and {Blaizot}, Jeremy and {Bouch{\'e}}, Nicholas and {Boudon}, Didier and {Chapuis}, Diane and {Daguise}, Eric and {Disseau}, Karen and {Guibert}, Matthieu and {Jarno}, Aurelien and {Jeanneau}, Alexandre and {Laurent}, Florence and {Loupias}, Magali and {Migniau}, Jean-Emmanuel and {Piqueras}, Laure and {Remillieux}, Alban and {Richard}, Johan and {P{\'e}contal-Rousset}, Arlette and {Bardou}, Lisa and {Close}, Madeline M. and {Deshmukh}, Rishi and {Dimoudi}, Sofia and {Dubbledam}, Marc and {King}, David and {Morris}, Simon and {Morris}, Timothy J. and {O'Brien}, Kieran S. and {Staykov}, Lazar and {Swinbank}, Mark and {Townson}, Matthew and {Younger}, Eddy and {Accardo}, Matteo and {Avarez Mendez}, Domingo and {Conzelmann}, Ralf and {Egner}, Sebastian and {George}, Elizabeth M. and {Gont{\'e}}, Frederic and {Hopgood}, Joshua and {Ives}, Derek and {Mehrgan}, Leander and {Mueller}, Eric and {Peroux}, Celine and {Vernet}, Joel and {Alonso Sanchez}, Angel and {Giuseppina}, Battaglia and {Cagigas}, Miguel and {Delgado}, Jos{\'e} Miguel and {Fernandez Izquierdo}, Patricia and {Fragoso L{\'o}pez}, Ana Bel{\'e}n. and {Garcia-Lorenzo}, Maria Bego{\~n}a. and {Hernandez Suarez}, Elvio and {Herreros Linares}, Jos{\'e} Miguel and {Joven}, Enrique and {L{\'o}pez}, Roberto and {Mart{\'\i}n Hernando}, Yolanda and {Mediavilla}, Evencio and {Monreal}, Ana and {Pe{\~n}ate Castro}, Jos{\'e} and {Rasilla}, Jose Luis and {Rebolo}, Rafael and {Rodr{\'\i}guez-Ramos}, Luis Fernando and {Vega Moreno}, Afrodisio and {Viera}, Teodora and {Carlotti}, Alexis and {Correia}, Jean-Jacques and {Delboulbe}, Alain and {Guieu}, Sylvain and {Hours}, Adrien and {Hubert}, Zoltan and {Jocou}, Laurent and {Magnard}, Yves and {Moulin}, Thibaut and {Pancher}, Fabrice and {Rabou}, Patrick and {Stadler}, Eric and {Contini}, Thierry and {Larrieu}, Marie and {Fantei-Caujolle}, Yan and {Lecron}, Daniel and {Rousseau}, Sylvain and {Beltramo-Martin}, Olivier and {Bon}, William and {Bonnefoi}, Anne and {Ceria}, William and {Choquet}, Elodie and {Correia}, Carlos and {Costille}, Anne and {Dohlen}, Kjetil and {Ducret}, Franck and {El-Hadi}, Kacem and {Epinat}, Benoit and {Fetick}, Romain and {Gach}, Jean-Luc and {Groussin}, Olivier and {Jaafar}, Issa and {Le Merrer}, Joel and {Llored}, Marc and {Pedreros}, Felipe and {Renault}, Edgard and {Sanchez}, Patrice and {Vigan}, Arthur and {Vola}, Pascal and {Lim}, Caroline and {Vedrenne}, Nicola and {Petit}, Cyril and {Sauvage}, Jean-Francois and {Bagci}, Taha and {Cann}, Nick and {Chao Ortiz}, Jorge and {Elliott}, Ellis and {Seitis}, Tea and {Tosh}, Ian and {Anderson}, Josh and {Black}, Martin and {Bond}, Charlotte and {Born}, Andy J. and {Campbell}, Kenny and {Campbell}, Neil and {Carruthers}, James and {Cochrane}, William and {Dobson}, Naomi and {Evans}, Chris J. and {Gallie}, Angus and {Gonzalez}, Oscar and {Harman}, Joel and {Henry}, David M. and {Humphreys}, William and {Louth}, Tom and {Miller}, Chris and {Montgomery}, David M. and {Murray}, John and {O'Malley}, Norman and {Ritchie}, Lynn and {Sanchez-Janssen}, Ruben and {Schwartz}, Noah and {Smith}, Patrick and {Watt}, Stuart and {Wells}, Martyn and {Wilson}, Sandi and {Gultekin}, Kayhan and {Mateo}, Mario and {Meyer}, Michael and {Valluri}, Monica and {Ahmad}, Munadi and {Booth}, Michael and {Capone}, John I. and {Cappellari}, Michele and {Gooding}, David and {Grisdale}, Kearn and {Hidalgo}, Andrea and {Kariuki}, James and {Lewis}, Ian J. and {Lowe}, Adam and {Lynn}, Jim and {Menduina}, Alvaro and {Ozer}, Zeynep and {Preece}, Roy and {Rigopoulou}, Dimitra and {Rodrigues}, Myriam and {Routledge}, Laurence},
  title = {HARMONI: first light spectroscopy for the ELT: instrument final design and quantitative performance predictions},
  booktitle = {Ground-based and Airborne Instrumentation for Astronomy VIII},
  year = {2020},
  month = {dec},
  volume = {11447},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {114471W},
  pages = {114471W},
  editor = {{Evans}, Christopher J. and {Bryant}, Julia J. and {Motohara}, Kentaro},
  doi = {10.1117/12.2562144},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2020SPIE11447E..1WT},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{sauvage20,
  author = {{Sauvage}, J.-F. and {Schwartz}, N. and {Vievard}, S. and {Bonnefois}, A. and {Velluet}, M.-T. and {Correia}, C. and {Cassaing}, F. and {Fusco}, T. and {Michau}, V. and {Krapez}, J.-C. and {Ferrari}, M. and {Laginja}, I.},
  title = {First error budget of a deployable CubeSat telescope},
  booktitle = {Space Telescopes and Instrumentation 2020: Optical, Infrared, and Millimeter Wave},
  year = {2020},
  month = {dec},
  volume = {11443},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {1144330},
  pages = {1144330},
  editor = {{Lystrup}, Makenzie and {Perrin}, Marshall D.},
  doi = {10.1117/12.2561697},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2020SPIE11443E..30S},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{sivo20,
  author = {{Sivo}, Gaetano and {Palmer}, David and {Scahrw{\"a}chter}, Julia and {Andersen}, Morten and {Provost}, Natalie and {Marin}, Eduardo and {van Dam}, Marcos and {Chinn}, Brian and {Chirre}, Emmanuel and {Cavedoni}, Charles and {Schneider}, Thomas and {Kang}, Stacy and {Hirst}, Paul and {Rambold}, William and {Ebbers}, Angelic and {Gigoux}, Pedro and {Catala}, Laure and {Hayward}, Thomas and {Blakeslee}, John and {Roe}, Henry and {Lotz}, Jennifer and {Kleinman}, Scot and {Sivanandam}, Suresh and {Krause}, Anja and {Ammons}, Mark and {Trujillo}, Chadwick and {Packham}, Chris and {Marchis}, Franck and {Christou}, Julian and {Jee}, James and {Bally}, John and {Pierce}, Mike and {Puzia}, Thomas and {Turri}, Paolo and {Kim}, Hwihyun and {Schwamb}, Meg and {Dupuy}, Trent and {Diaz}, Ruben and {Carrasco}, Rodrigo and {Neichel}, Benoit and {Correia}, Carlos and {Steinbring}, Eric and {Rigaut}, Fran{\c{c}}ois and {V{\'e}ran}, Jean-Pierre and {Chun}, Mark and {Lamb}, Masen and {Chapman}, Scott and {Esposito}, Simone and {Fusco}, Thierry},
  title = {GNAO: an MCAO facility for Gemini North},
  booktitle = {Advances in Optical Astronomical Instrumentation 2019},
  year = {2020},
  month = {jan},
  volume = {11203},
  series = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  eid = {112030N},
  pages = {112030N},
  editor = {{Ellis}, Simon C. and {d'Orgeville}, C{\'e}line},
  doi = {10.1117/12.2539706},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2020SPIE11203E..0NS},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

@INPROCEEDINGS{lu20,
  author = {{Lu}, J.~R. and {Wizinowich}, P. and {Correia}, C. and {Chin}, J. and {Cetre}, S. and {Lilley}, S. and {Ragland}, S. and {Wetherell}, E. and {Birrer}, S. and {Do}, T. and {Drechsler}, W. and {Ghez}, A. and {Jones}, T. and {Liu}, M. and {Mawet}, D. and {Max}, C. and {Morris}, M. and {Treu}, T. and {Wright}, S.},
  title = {KAPA: A new Keck laser-guide star AO system that increases image quality and sky coverage},
  booktitle = {American Astronomical Society Meeting Abstracts \#235},
  year = {2020},
  month = {jan},
  volume = {235},
  series = {American Astronomical Society Meeting Abstracts},
  eid = {118.03},
  pages = {118.03},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2020AAS...23511803L},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System}
}

% 2019
@INPROCEEDINGS{sivo19,
  author = {{Sivo}, Gaetano and {Blakeslee}, John and {Lotz}, Jennifer and
 {Roe}, Henry and {Andersen}, Morten and {Scharwachter}, Julia and
 {Palmer}, David and {Kleinman}, Scot and {Adamson}, Andy and
 {Hirst}, Paul and {Marin}, Eduardo and {Catala}, Laure and
 {van Dam}, Marcos and {Goodsell}, Stephen and {Provost}, Natalie and
 {Diaz}, Ruben and {Jorgensen}, Inger and {Kim}, Hwihyun and
 {Lemoine-Busserolle}, Marie and {Blain}, Celia and {Chun}, Mark and
 {Ammons}, Mark and {Christou}, Julian and {Bond}, Charlotte and {Sivanand
 am}, Suresh and {Turri}, Paolo and {Wizinowich}, Peter and
 {Correia}, Carlos and {Neichel}, Benoit and {Veran}, Jean-Pierre and
 {Esposito}, Simone and {Lamb}, Masen and {Fusco}, Thierry and
 {Rigaut}, Fran{\c{c}}ois and {Steinbring}, Eric},
  title = {Entering into the Wide Field Adaptive Optics Era in the Northern Hemisphere},
  booktitle = {\baas},
  year = {2019},
  month = {Sep},
  volume = {51},
  eid = {258},
  pages = {258},
  eprint = {1907.08169},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2019BAAS...51g.258S},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {Astrophysics - Instrumentation and Methods for Astrophysics}
}

% 2018
@INPROCEEDINGS{neichel18,
  author = {{Neichel}, B. and {Mouillet}, D. and {Gendron}, E. and {Correia}, C. and
 {Sauvage}, J.~F. and {Fusco}, T.},
  title = {Overview of the European Extremely Large Telescope and its instrument suite},
  booktitle = {SF2A-2018: Proceedings of the Annual meeting of the French Society of Astronomy and Astrophysics},
  year = {2018},
  month = {Dec},
  pages = {Di},
  eprint = {1812.06639},
  archiveprefix = {arXiv},
  primaryclass = {astro-ph.IM},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {Ground based telescope, ELT, Instrumentation, Adaptive Optics, Astrophysics - Instrumentation and Methods for Astrophysics},
  url = {https://ui.adsabs.harvard.edu/abs/2018sf2a.conf....3N}
}

@INPROCEEDINGS{lehtonen18,
  author = {{Lehtonen}, Jonatan and {Correia}, Carlos M. and {Helin}, Tapio},
  title = {Limits of turbulence and outer scale profiling with non-Kolmogorov
 statistics},
  booktitle = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  year = {2018},
  month = {Jul},
  volume = {10703},
  eid = {107036C},
  pages = {107036C},
  doi = {10.1117/12.2313960},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  url = {https://ui.adsabs.harvard.edu/#abs/2018SPIE10703E..6CL}
}

@INPROCEEDINGS{lamb18,
  author = {{Lamb}, Masen and {Norton}, Andrew and {Macintosh}, Bruce and {Correia},
 Carlos and {V{\'e}ran}, Jean-Pierre and {Marois}, Christian and
 {Sivanandam}, Suresh},
  title = {Application of the phase diversity to estimate the non-common path
 aberrations in the Gemini planet imager: results from simulation
 and real data},
  booktitle = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  year = {2018},
  month = {Jul},
  volume = {10703},
  eid = {107035M},
  pages = {107035M},
  doi = {10.1117/12.2313458},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  url = {https://ui.adsabs.harvard.edu/#abs/2018SPIE10703E..5ML}
}

@INPROCEEDINGS{heritier18,
  author = {{Heritier}, Cedric T. and {Esposito}, Simone and {Fusco}, Thierry and
 {Neichel}, Benoit and {Oberti}, Sylvain and {Pinna}, Enrico and
 {Agapito}, Guido and {Puglisi}, Alfio and {Briguglio}, Runa and
 {Correia}, Carlos and {Madec}, Pierre-Yves and {Sauvage}, Jean-
 Fran{\c{c}}ois and {Kolb}, Johann and {Quiros-Pacheco}, Fernando},
  title = {Analysis of AO modeling for pseudo-synthetic interaction matrix at the
 LBT},
  booktitle = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  year = {2018},
  month = {Jul},
  volume = {10703},
  eid = {107034P},
  pages = {107034P},
  doi = {10.1117/12.2311675},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  url = {https://ui.adsabs.harvard.edu/#abs/2018SPIE10703E..4PH}
}

@INPROCEEDINGS{bond18,
  author = {{Bond}, Charlotte Z. and {Correia}, Carlos M. and {Sauvage}, Jean-
 Fran{\c{c}}ois and {El Hadi}, Kacem and {Neichel}, Benoit and
 {Fusco}, Thierry},
  title = {Fourier wavefront reconstruction with a pyramid wavefront sensor},
  booktitle = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  year = {2018},
  month = {Jul},
  volume = {10703},
  eid = {107034M},
  pages = {107034M},
  doi = {10.1117/12.2314028},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  url = {https://ui.adsabs.harvard.edu/#abs/2018SPIE10703E..4MB}
}

@INPROCEEDINGS{beltramomartin18b,
  author = {{Beltramo-Martin}, O. and {Correia}, C.~M. and {Neichel}, B. and
 {Fusco}, T. and {Ragland}, S. and {Wizinowich}, P.~L.},
  title = {Point spread function reconstruction coupling AO telemetry and focal
 plane images},
  booktitle = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  year = {2018},
  month = {Jul},
  volume = {10703},
  eid = {107032G},
  pages = {107032G},
  doi = {10.1117/12.2313233},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  url = {https://ui.adsabs.harvard.edu/#abs/2018SPIE10703E..2GB}
}

@INPROCEEDINGS{schwartz18,
  author = {{Schwartz}, Noah and {Sauvage}, Jean-Fran{\c{c}}ois and {Correia},
 Carlos and {Neichel}, Benoit and {Fusco}, Thierry and {Quiros-
 Pacheco}, Fernando and {Dohlen}, Kjetil and {El Hadi}, Kacem and
 {Agapito}, Guido and {Thatte}, Niranjan and {Clarke}, Fraser},
  title = {Analysis and mitigation of pupil discontinuities on adaptive optics
 performance},
  booktitle = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  year = {2018},
  month = {Jul},
  volume = {10703},
  eid = {1070322},
  pages = {1070322},
  doi = {10.1117/12.2313129},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  url = {https://ui.adsabs.harvard.edu/#abs/2018SPIE10703E..22S}
}

@INPROCEEDINGS{mouillet18,
  author = {{Mouillet}, D. and {Milli}, J. and {Sauvage}, J. -F. and {Fusco}, T. and
 {Beuzit}, J. -L. and {Vigan}, A. and {Albert}, D. and
 {Boccaletti}, A. and {Cantalloube}, F. and {Chauvin}, G. and
 {Correia}, C. and {Delorme}, P. and {Dohlen}, K. and {Kasper},
 M. and {Lagrange}, A. -M. and {Meunier}, N. and {Pannetier}, C.},
  title = {Statistical analysis and lessons learned of SPHERE adaptive optics
 performance},
  booktitle = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  year = {2018},
  month = {Jul},
  volume = {10703},
  eid = {107031Q},
  pages = {107031Q},
  doi = {10.1117/12.2313277},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  url = {https://ui.adsabs.harvard.edu/#abs/2018SPIE10703E..1QM}
}

@INPROCEEDINGS{correia18,
  author = {{Correia}, Carlos M.},
  title = {Advanced control laws for the new generation of AO systems},
  booktitle = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  year = {2018},
  month = {Jul},
  volume = {10703},
  eid = {107031M},
  pages = {107031M},
  doi = {10.1117/12.2313131},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  url = {https://ui.adsabs.harvard.edu/#abs/2018SPIE10703E..1MC}
}

@INPROCEEDINGS{chapman18,
  author = {{Chapman}, Scott C. and {Sivanadam}, Suresh and {Andersen}, David and
 {Bradley}, Colin and {Correia}, Carlos and {Lamb}, Masen and
 {Lardiere}, Olivier and {Ross}, Colin and {Sivo}, Gaetano and
 {Veran}, Jean-Pierre},
  title = {The multi-object adaptive optics system for the GIRMOS spectrograph on
 Gemini-South},
  booktitle = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  year = {2018},
  month = {Jul},
  volume = {10703},
  eid = {107031K},
  pages = {107031K},
  doi = {10.1117/12.2312395},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  url = {https://ui.adsabs.harvard.edu/#abs/2018SPIE10703E..1KC}
}

@INPROCEEDINGS{swanson18,
  author = {{Swanson}, Robin and {Lamb}, Masen and {Correia}, Carlos and
 {Sivanandam}, Suresh and {Kutulakos}, Kiriakos},
  title = {Wavefront reconstruction and prediction with convolutional neural
 networks},
  booktitle = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  year = {2018},
  month = {Jul},
  volume = {10703},
  eid = {107031F},
  pages = {107031F},
  doi = {10.1117/12.2312590},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  url = {https://ui.adsabs.harvard.edu/#abs/2018SPIE10703E..1FS}
}

@INPROCEEDINGS{sivanandam18,
  author = {{Sivanandam}, Suresh and {Chapman}, Scott and {Simard}, Luc and
 {Hickson}, Paul and {Venn}, Kim and {Thibault}, Simon and
 {Sawicki}, Marcin and {Muzzin}, Adam and {Erickson}, Darren and
 {Abraham}, Roberto and {Akiyama}, Masayuki and {Andersen}, David
 and {Bradley}, Colin and {Carlberg}, Raymond and {Chen}, Shaojie
 and {Correia}, Carlos and {Davidge}, Tim and {Ellison}, Sara and
 {El-Sankary}, Kamal and {Fahlman}, Gregory and {Lamb}, Masen and
 {Lardi{\`e}re}, Olivier and {Lemoine-Busserolle}, Marie and
 {Moon}, Dae-Sik and {Murray}, Norman and {Peck}, Alison and
 {Shafai}, Cyrus and {Sivo}, Gaetano and {Veran}, Jean-Pierre and
 {Yee}, Howard},
  title = {Gemini infrared multi-object spectrograph: instrument overview},
  booktitle = {Society of Photo-Optical Instrumentation Engineers (SPIE) Conference Series},
  year = {2018},
  month = {Jul},
  volume = {10702},
  eid = {107021J},
  pages = {107021J},
  doi = {10.1117/12.2313924},
  primaryclass = {astro-ph.IM},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {Astrophysics - Instrumentation and Methods for Astrophysics,
 Astrophysics - Cosmology and Nongalactic Astrophysics,
 Astrophysics - Astrophysics of Galaxies},
  url = {https://ui.adsabs.harvard.edu/#abs/2018SPIE10702E..1JS}
}

@INPROCEEDINGS{beuzit18,
  author = {Jean-Luc Beuzit and David Mouillet and Thierry Fusco and Jean-François Sauvage and Kjetil Dohlen and Julien Milli and Laurent M. Mugnier and Arthur Vigan and Carlos M. Correia and Anthony Boccaletti and Gérard Rousset and Pierre Baudoz and Alexis Carlotti and Mamadou N'Diaye and Frantz Martinache and Markus Kasper},
  title = {A possible VLT-SPHERE XAO upgrade: going faster, going fainter, going deeper (Conference Presentation)},
  year = {2018},
  volume = {10703},
  doi = {10.1117/12.2313542},
  url = {https://doi.org/10.1117/12.2313542},
  journal = {Proc.SPIE}
}

@INPROCEEDINGS{sauvage18,
  author = {Jean-François Sauvage and Benoit Neichel and Thierry Fusco and Carlos Correia and Kjetil Dohlen and Léonardo Blanco and Kacem El Hadi and Niranjan A. Thatte},
  title = {HARMONI at the diffraction limit: from single conjugate to laser tomography adaptive optics (Conference Presentation)},
  year = {2018},
  volume = {10703},
  doi = {10.1117/12.2311472},
  url = {https://doi.org/10.1117/12.2311472},
  journal = {Proc.SPIE}
}

% 2016
@INPROCEEDINGS{correia16,
  author = {Carlos M. Correia and Paolo Massioni},
  title = {Strehl-optimal Kalman filtering in large-scale tomographic adaptive optics},
  booktitle = {Imaging and Applied Optics 2016},
  year = {2016},
  pages = {AOW5C.2},
  publisher = {Optical Society of America},
  doi = {10.1364/AOMS.2016.AOW5C.2},
  keywords = {Probability theory, stochastic processes, and statistics; Active or adaptive optics; Imaging through turbulent media},
  abstract = {Our goal is the provide a tour of recent progress towards rendering Kalman filters suitable for driving astronomical adaptive optics with increasing numbers of degrees of freedom and discuss the prospects to port them to the foreseen real-time architectures.},
  url = {http://www.osapublishing.org/abstract.cfm?URI=AOMS-2016-AOW5C.2},
  journal = {Imaging and Applied Optics 2016}
}

@INPROCEEDINGS{martin16a,
  author = {Martin, O. A. and Correia, C.~M. and Gendron, E. and Rousset, G. and Gratadour, D. and Vidal, F. and Morris, T. J. and Basden, A. G. and Myers, R. M. and Neichel, B. and Fusco, T.},
  title = {
PSF reconstruction validated using on-sky CANARY data in MOAO mode
},
  year = {2016},
  volume = {9909},
  pages = {99091Q-99091Q-13},
  doi = {10.1117/12.2231424},
  abstract = {
CANARY is an open-loop tomographic adaptive optics (AO) demonstrator that was designed for use at the 4.2m William Herschel Telescope (WHT) in La Palma. Gearing up to extensive statistical studies of high redshifted galaxies surveyed with Multi-Object Spectrographs (MOS), the demonstrator CANARY has been designed to tackle technical challenges related to open-loop Adaptive-Optics (AO) control with mixed Natural Guide Star (NGS) and Laser Guide Star (LGS) tomography. We have developed a Point Spread Function (PSF)-Reconstruction algorithm dedicated to MOAO systems using system telemetry to estimate the PSF potentially anywhere in the observed field, a prerequisite to deconvolve AO-corrected science observations in Integral Field Spectroscopy (IFS). Additionally the ability to accurately reconstruct the PSF is the materialization of the broad and fine-detailed understanding of the residual error contributors, both atmospheric and opto-mechanical. In this paper we compare the classical PSF-r approach from Véran (1) that we take as reference on-axis using the truth-sensor telemetry to one tailored to atmospheric tomography by handling the off-axis data only. We've post-processed over 450 on-sky CANARY data sets with which we observe 92% and 88% of correlation on respectively the reconstructed Strehl Ratio (SR)/Full Width at Half Maximum (FWHM) compared to the sky values. The reference method achieves 95% and 92.5% exploiting directly the measurements of the residual phase from the Canary Truth Sensor (TS).
},
  url = { http://dx.doi.org/10.1117/12.2231424},
  journal = {Proc. SPIE}
}

@INPROCEEDINGS{neichel16,
  author = {Neichel, B. and Fusco, T. and Sauvage, J.-F. and Correia, C.~M. and Dohlen, K. and El-Hadi, K. and Blanco, L. and Schwartz, N. and Clarke, F. and Thatte, N. A. and Tecza, M. and Paufique, J. and Vernet, J. and Le Louarn, M. and Hammersley, P. and Gach, J.-L. and Pascale, S. and Vola, P. and Petit, C. and Conan, J.-M. and Carlotti, A. and Verinaud, C. and Schnetler, H. and Bryson, I. and Morris, T. and Myers, R. and Hugot, E. and Gallie, A. M. and Henry, David M.},
  title = {
The adaptive optics modes for HARMONI: from Classical to Laser Assisted Tomographic AO
},
  year = {2016},
  volume = {9909},
  pages = {990909-990909-15},
  doi = {10.1117/12.2231681},
  abstract = {
HARMONI is a visible and NIR integral field spectrograph, providing the E-ELT’s core spectroscopic capability at first light. HARMONI will work at the diffraction limit of the E-ELT, thanks to a Classical and a Laser Tomographic AO system. In this paper, we present the system choices that have been made for these SCAO and LTAO modules. In particular, we describe the strategy developed for the different Wave-Front Sensors: pyramid for SCAO, the LGSWFS concept, the NGSWFS path, and the truth sensor capabilities. We present first potential implementations. And we asses the first system performance.
},
  url = { http://dx.doi.org/10.1117/12.2231681},
  journal = {Proc. SPIE}
}

@INPROCEEDINGS{bond16,
  author = {Bond, Charlotte Z. and El Hadi, Kacem and Sauvage, Jean-Francois and Correia, C.~M. and Fauvarque, Olivier and Rabaud, Didier and Lamb, Masen and Neichel, Benoit and Fusco, Thierry},
  title = {
Experimental study of an optimised Pyramid wave-front sensor for Extremely Large Telescopes
},
  year = {2016},
  volume = {9909},
  pages = {990964-990964-13},
  doi = {10.1117/12.2232968},
  abstract = {
Over the last few years the Laboratoire d'Astrophysique de Marseille (LAM) has been heavily involved in R&amp;D for adaptive optics systems dedicated to future large telescopes, particularly in preparation for the European Extremely Large Telescope (E-ELT). Within this framework an investigation into a Pyramid wave-front sensor is underway. The Pyramid sensor is at the cutting edge of high order, high precision wave-front sensing for ground based telescopes. Investigations have demonstrated the ability to achieve a greater sensitivity than the standard Shack-Hartmann wave-front sensor whilst the implementation of a Pyramid sensor on the Large Binocular Telescope (LBT) has provided compelling operational results.1, 2The Pyramid now forms part of the baseline for several next generation Extremely Large Telescopes (ELTs). As such its behaviour under realistic operating conditions must be further understood in order to optimise performance. At LAM a detailed investigation into the performance of the Pyramid aims to fully characterise the behaviour of this wave-front sensor in terms of linearity, sensitivity and operation. We have implemented a Pyramid sensor using a high speed OCAM2 camera (with close to 0 readout noise and a frame rate of 1.5kHz) in order to study the performance of the Pyramid within a full closed loop adaptive optics system. This investigation involves tests on all fronts, from theoretical models and numerical simulations to experimental tests under controlled laboratory conditions, with an aim to fully understand the Pyramid sensor in both modulated and non-modulated configurations. We include results demonstrating the linearity of the Pyramid signals, compare measured interaction matrices with those derived in simulation and evaluate the performance in closed loop operation. The final goal is to provide an on sky comparison between the Pyramid and a Shack-Hartmann wave-front sensor, at Observatoire de la Côte d'Azur (ONERA-ODISSEE bench). Here we present the adaptive optics setup at LAM and latest experimental and modelling results. The loop is closed on different static wave-front errors: the initial shape of the deformable mirror (DM) and a turbulent-like shape projected onto the DM. The results demonstrate a Pyramid closed loop performance of 7–8nm rms wave-front error compared to a reference at surface.
},
  url = { http://dx.doi.org/10.1117/12.2232968},
  journal = {Proc. SPIE}
}

@INPROCEEDINGS{jahn16,
  author = {Jahn, Wilfried and Hugot, Emmanuel and Fusco, Thierry and Neichel, Benoit and Ferrari, Marc and Correia, C.~M. and Pueyo, Laurent and Dohlen, Kjetil and Pascal, Sandrine and Vola, Pascal and Sauvage, Jean-Francois and El Hadi, Kacem and Gach, Jean Luc},
  title = {
Laser guide star spot shrinkage for affordable wavefront sensors
},
  year = {2016},
  volume = {9909},
  pages = {99096L-99096L-6},
  doi = {10.1117/12.2232367},
  abstract = {
Innovative optical designs allow tackling the spot elongation issues in Shack-Hartman based laser guide star wavefront sensors. We propose two solutions using either a combination of two arrays of freeform microlenses, or a combination of freeform optics, to perform a shrinkage of the laser spots as well as a magnification of the SH focal plane. These approaches will drastically reduce the number of needed pixels, thus making possible the use of existing detectors. We present the recent advances on this activity as well as the estimation of performance, linearity and sensitivity of the compressed system in presence of aberrations.
},
  url = { http://dx.doi.org/10.1117/12.2232367},
  journal = {Proc. SPIE}
}

@INPROCEEDINGS{schwartz16,
  author = {Schwartz, Noah and Sauvage, Jean-Francois and Correia, C.~M. and Neichel, Benoit and Blanco, Léonardo and Fusco, Thierry and Pecontal-Rousset, Arlette and Jarno, Aurelien and Piqueras, Laure and Dohlen, Kjetil and El Hadi, Kacem and Thatte, Niranjan and Bryson, Ian and Clarke, Fraser and Schnetler, Hermine},
  title = {
Preparation of AO-related observations and post-processing recipes for E-ELT HARMONI-SCAO
},
  year = {2016},
  volume = {9909},
  pages = {990978-990978-10},
  doi = {10.1117/12.2231291},
  abstract = {
HARMONI is a visible and near-infrared integral field spectrograph designed to be a first-light instrument on the European extremely large telescope. It will use both single-conjugate and laser tomographic adaptive optics to fully exploit high-performance and sky coverage. Using a fast AO modelling toolbox, we simulate anisoplanatism effects on the point spread function of the single-conjugate adaptive optics of HARMONI. We investigate the degradation of the correction performance with respect to the off-axis distance in terms of Strehl ratio and ensquared energy. In addition, we analyse what impact the natural guide source magnitude, AO sampling frequency and number of sub-apertures have on performance. We show, in addition to the expected PSF degradation with the field direction, that the PSF retains a coherent core even at large off-axis distances. We demonstrated the large performance improvement of fine tuning the sampling frequency for dimer natural guide stars and an improvement of approx. 50% in SR can be reached above the nominal case. We show that using a smaller AO system with only 20x20 sub-apertures it is possible to further increase performance and maintain equivalent performance even for large off-axis angles.
},
  url = { http://dx.doi.org/10.1117/12.2231291},
  journal = {Proc. SPIE}
}

@INPROCEEDINGS{piqueras16,
  author = {Piqueras, Laure and Jarno, Aurelien and Pecontal-Rousset, Arlette and Loupias, Magali and Richard, Johan and Schwartz, Noah and Fusco, Thierry and Sauvage, Jean-Francois and Neichel, Benoît and Correia, C.~M.},
  title = {
Preliminary design of the HARMONI science software
},
  year = {2016},
  volume = {9911},
  pages = {99111Z-99111Z-11},
  doi = {10.1117/12.2232440},
  abstract = {
This paper introduces the science software of HARMONI. The Instrument Numerical Model simulates the instrument from the optical point of view and provides synthetic exposures simulating detector readouts from data-cubes containing astrophysical scenes. The Data Reduction Software converts raw-data frames into a fully calibrated, scientifically usable data cube. We present the functionalities and the preliminary design of this software, describe some of the methods and algorithms used and highlight the challenges that we will have to face.
},
  url = { http://dx.doi.org/10.1117/12.2232440},
  journal = {Proc. SPIE}
}

@INPROCEEDINGS{thatte16,
  author = {Thatte, Niranjan A. and Clarke, Fraser and Bryson, Ian and Shnetler, Hermine and Tecza, Matthias and Fusco, Thierry and Bacon, Roland M. and Richard, Johan and Mediavilla, Evencio and Neichel, Benoit and Arribas, Santiago and Garcia-Lorenzo, Begoña and Evans, Christopher J. and Remillieux, Alban and El Madi, Kacem and Herreros, Jose Miguel and Melotte, Dave and O'Brien, Kieran and Tosh, Ian A. and Vernet, Joel and Hammersley, Peter and Ives, Derek J. and Finger, Gert and Houghton, Ryan and Rigopoulou, Dimitra and Lynn, James D. and Allen, Jamie R. and Zieleniewski, Simon D. and Kendrew, Sarah and Ferraro-Wood, Vanessa and Pécontal-Rousset, Arlette and Kosmalski, Johan and Laurent, Florence and Loupias, Magali and Piqueras, Laure and Renault, Edgar and Blaizot, Jeremy and Daguisé, Eric and Migniau, Jean-Emmanuel and Jarno, Aurélien and Born, Andy and Gallie, Angus M. and Montgomery, David M. and Henry, David and Schwartz, Noah and Taylor, William and Zins, Gérard and Rodríguez-Ramos, Luis Fernando and Cagigas, Miguel and Battaglia, Giuseppina and Rebolo López, Refael and Hernández Suárez, Elvio and Gigante-Ripoll, José Vicente and Piqueras López, Javier and Villa Martin, Montserrat and Correia, C.~M. and Pascal, Sandrine and Blanco, Leonardo and Vola, Pascal and Epinat, Benoit and Peroux, Celine and Vigan, Arthur and Dohlen, Kjetil and Sauvage, Jean-Francois and Lee, Martin and Carlotti, Alexis and Verinaud, Christophe and Morris, Tim and Myers, Richard and Reeves, Andrew and Swinbank, Mark and Calcines, Ariadna and Larrieu, Marrie},
  title = {
The E-ELT first light spectrograph HARMONI: capabilities and modes
},
  year = {2016},
  volume = {9908},
  pages = {99081X-99081X-11},
  doi = {10.1117/12.2230629},
  abstract = {
HARMONI is the E-ELT’s first light visible and near-infrared integral field spectrograph. It will provide four different spatial scales, ranging from coarse spaxels of 60 × 30 mas best suited for seeing limited observations, to 4 mas spaxels that Nyquist sample the diffraction limited point spread function of the E-ELT at near-infrared wavelengths. Each spaxel scale may be combined with eleven spectral settings, that provide a range of spectral resolving powers (R ~3500, 7500 and 20000) and instantaneous wavelength coverage spanning the 0.5 – 2.4 μm wavelength range of the instrument. In autumn 2015, the HARMONI project started the Preliminary Design Phase, following signature of the contract to design, build, test and commission the instrument, signed between the European Southern Observatory and the UK Science and Technology Facilities Council. Crucially, the contract also includes the preliminary design of the HARMONI Laser Tomographic Adaptive Optics system. The instrument’s technical specifications were finalized in the period leading up to contract signature. In this paper, we report on the first activity carried out during preliminary design, defining the baseline architecture for the system, and the trade-off studies leading up to the choice of baseline.
},
  url = { http://dx.doi.org/10.1117/12.2230629},
  journal = {Proc. SPIE}
}

@INPROCEEDINGS{guesalaga16,
  author = {Guesalaga, A. and Neichel, B. and Correia, C.~M. and Butterley, T. and Osborn, J. and Masciadri, E. and Fusco, T. and Sauvage, J-F.},
  title = {
Online estimation of atmospheric turbulence parameters and outer-scale profiling
},
  year = {2016},
  volume = {9909},
  pages = {99093C-99093C-11},
  doi = {10.1117/12.2231970},
  abstract = {
Estimating the outer scale profile, L0(h) in the context of current very large and future extremely large telescopes is crucial, as it impacts the on-line estimation of turbulence parameters (Cn2(h), r0, θ0 and τ0) and the performance of Wide Field Adaptive Optics (WFAO) systems. We describe an on-line technique that estimates L0(h) using AO loop data available at the facility instruments. It constructs the cross-correlation functions of the slopes of two or more wavefront sensors, which are fitted to linear combinations of theoretical responses for individual layers with different altitudes and outer scale values. We analyze some restrictions found in the estimation process, which are general to any measurement technique. The insensitivity of the instrument to large values of outer scale is one of them, as the telescope becomes blind to outer scales larger than its diameter. Another problem is the contradiction between the length of data and the stationarity assumption of the turbulence (turbulence parameters may change during the data acquisition time). Our method effectively deals with problems such as noise estimation, asymmetric correlation functions and wavefront propagation effects. It is shown that the latter cannot be neglected in high resolution AO systems or strong turbulence at high altitudes. The method is applied to the Gemini South MCAO system (GeMS) that comprises five wavefront sensors and two DMs. Statistical values of L0(h) at Cerro Pachón from data acquired with GeMS during three years are shown, where some interesting resemblance to other independent results in the literature are shown.
},
  url = { http://dx.doi.org/10.1117/12.2231970},
  journal = {Proc. SPIE}
}

@INPROCEEDINGS{ono16a,
  author = {Ono, Y. H. and Correia, C.~M. and Lardière, O. and Andersen, D. R. and Oya, S. and Akiyama, M. and Gamroth, D. and Jackson, K. and Martin, O. and Guesalaga, A. and Bradley, C.},
  title = {
The statistics of atmospheric turbulence at Maunakea measured by RAVEN
},
  year = {2016},
  volume = {9909},
  pages = {99093E-99093E-7},
  doi = {10.1117/12.2232359},
  abstract = {
Prior statistical knowledge of the turbulence such as turbulence strength, layer altitudes and the outer scale is essential for atmospheric tomography in adaptive-optics (AO). These atmospheric parameters can be estimated from measurements of multiple Shack-Hartmann wave-front sensors (SH-WFSs) by the SLOpe Detection And Ranging (SLODAR). In this paper, we present the statistics of the vertical CN2 and the outer scale L0 at Maunakea in Hawaii estimated from 60 hours telemetry data in total from multiple SH-WFSs of RAVEN, which is an on-sky multi-object AO demonstrator tested on the Subaru telescope. The mean seeing during the RAVEN on-sky observations is 0.475 arcsec, and 55% turbulence is below 1.5 km. The vertical profile of CN2 from the RAVEN SLODAR is consistent with the profiles from CFHT DIMM and MASS, and TMT site characterization.
},
  url = { http://dx.doi.org/10.1117/12.2232359},
  journal = {Proc. SPIE}
}

@INPROCEEDINGS{martin16b,
  author = {Martin, O. A. and Correia, C.~M. and Gendron, E. and Rousset, G. and Vidal, F. and Morris, T. J. and Basden, A. G. and Myers, R. M. and Ono, Y. H. and Neichel, B. and Fusco, T.},
  title = {
William Herschel Telescope site characterization using the MOAO pathfinder CANARY on-sky data
},
  year = {2016},
  volume = {9909},
  pages = {99093P-99093P-15},
  doi = {10.1117/12.2231437},
  abstract = {
CANARY is the Multi-Object Adaptive Optics (MOAO) pathfinder for the future MOAO-assisted Integral-Field Units (IFU) proposed for Extremely Large Telescopes (ELT). The MOAO concept relies on tomographically reconstructing the turbulence using multiple measurements along different lines of sight.Tomography requires the knowledge of the statistical turbulence parameters, commonly recovered from the system telemetry using a dedicated profiling technique. For demonstration purposes with the MOAO pathfinder CANARY, this identification is performed thanks to the Learn &amp; Apply (L&amp;A) algorithm, that consists in model-fitting the covariance matrix of WFS measurements dependant on relevant parameters: Cn2(h) profile, outer scale profile and system mis-registration. We explore an upgrade of this algorithm, the Learn 3 Steps (L3S) approach, that allows one to dissociate the identification of the altitude layers from the ground in order to mitigate the lack of convergence of the required empirical covariance matrices therefore reducing the required length of data time-series for reaching a given accuracy. For nominal observation conditions, the L3S can reach the same level of tomographic error in using five times less data frames than the L&amp;A approach. The L3S technique has been applied over a large amount of CANARY data to characterize the turbulence above the William Herschel Telescope (WHT). These data have been acquired the 13th, 15th, 16th, 17th and 18th September 2013 and we find 0.67"/8.9m/3.07m.s−1 of total seeing/outer scale/wind-speed, with 0.552"/9.2m/2.89m.s−1 below 1.5 km and 0.263"/10.3m/5.22m.s−1 between 1.5 and 20 km. We have also determined the high altitude layers above 20 km, missed by the tomographic reconstruction on CANARY , have a median seeing of 0.187" and have occurred 16% of observation time.
},
  url = { http://dx.doi.org/10.1117/12.2231437},
  journal = {Proc. SPIE}
}

@INPROCEEDINGS{ono16b,
  author = {Ono, Y. H. and Correia, C.~M. and Lardiere, O. and Andersen, D. R. and Oya, S. and Akiyama, M. and Gamroth, D. and Jackson, K. and Martin, O. and Bradley, C.},
  title = {
On-sky MOAO performance evaluation of RAVEN
},
  year = {2016},
  volume = {9909},
  pages = {990910-990910-6},
  doi = {10.1117/12.2232321},
  abstract = {
This paper presents the AO performance we got on-sky with RAVEN, a Multi-Object Adaptive Optics (MOAO) technical and science demonstrator installed and tested at the Subaru telescope. We report Ensquared-Energy (EE) and Full Width at Half Maximum (FWHM) measured from science images on Subaru's IRCS taken during all of the on-sky observing runs. We show these metrics as function of different AO modes and atmospheric conditions for two asterisms of natural guide stars. The performances of the MOAO and Ground-Layer AO (GLAO) modes are between the classical Single-Conjugate AO (SCAO) and seeing-limited modes. We achieve the EE of 30% in H-band with the MOAO correction, which is a science requirement for RAVEN. The MOAO provides sightly better performance than the GLAO mode in both asterisms. One of the reasons which cause this small difference between the MOAO and GLAO modes may be the strong GL contribution. Also, the performance of the MOAO modes is affected by the accuracy of the on-sky turbulence profiling by the SLOpe Detection And Ranging (SLODAR) method.
},
  url = { http://dx.doi.org/10.1117/12.2232321},
  journal = {Proc. SPIE}
}

@INPROCEEDINGS{correia16a,
  author = {Correia, C.~M. and Neichel, Benoit and Conan, Jean-Marc and Petit, Cyril and Sauvage, Jean-Francois and Fusco, Thierry and Vernet, Joel D. R. and Thatte, Niranjan},
  title = {
Natural guide-star processing for wide-field laser-assisted AO systems
},
  year = {2016},
  volume = {9909},
  pages = {99094H-99094H-13},
  doi = {10.1117/12.2232918},
  abstract = {
Sky-coverage in laser-assisted AO observations largely depends on the system's capability to guide on the faintest natural guide-stars possible. Here we give an up-to-date status of our natural guide-star processing tailored to the European-ELT's visible and near-infrared (0.47 to 2.45 μm) integral field spectrograph — Harmoni. We tour the processing of both the isoplanatic and anisoplanatic tilt modes using the spatio-angular approach whereby the wavefront is estimated directly in the pupil plane avoiding a cumbersome explicit layered estimation on the 35-layer profiles we're currently using. Taking the case of Harmoni, we cover the choice of wave-front sensors, the number and field location of guide-stars, the optimised algorithms to beat down angular anisoplanatism and the performance obtained with different temporal controllers under split high-order/low-order tomography or joint tomography. We consider both atmospheric and far greater telescope wind buffeting disturbances. In addition we provide the sky-coverage estimates thus obtained.
},
  url = { http://dx.doi.org/10.1117/12.2232918},
  journal = {Proc. SPIE}
}

@INPROCEEDINGS{lamb16a,
  author = {Lamb, Masen and Correia, C.~M. and Sauvage, Jean-Francois and Véran, Jean-Pierre and Andersen, David and Vigan, Arthur and Wizinowich, Peter and van Dam, Marcos and Mugnier, Laurent and Bond, Charlotte},
  title = {
Estimating phase errors from pupil discontinuities from simulated on sky data: examples with VLT and Keck
},
  year = {2016},
  volume = {9909},
  pages = {99096D-99096D-11},
  doi = {10.1117/12.2233093},
  abstract = {
We propose and apply two methods for estimating phase discontinuities for two realistic scenarios on VLT and Keck. The methods use both phase diversity and a form of image sharpening. For the case of VLT, we simulate the `low wind effect' (LWE) which is responsible for focal plane errors in low wind and good seeing conditions. We successfully estimate the LWE using both methods, and show that using both methods both independently and together yields promising results. We also show the use of single image phase diversity in the LWE estimation, and show that it too yields promising results. Finally, we simulate segmented piston effects on Keck/NIRC2 images and successfully recover the induced phase errors using single image phase diversity. We also show that on Keck we can estimate both the segmented piston errors and any Zernike modes affiliated with the non-common path.
},
  url = { http://dx.doi.org/10.1117/12.2233093},
  journal = {Proc. SPIE}
}

@INPROCEEDINGS{lamb16b,
  author = {Lamb, Masen and Correia, C.~M. and Sauvage, Jean-Francois and Andersen, David and Veran, Jean-Pierre},
  title = {
Exploring the operational effects of phase diversity for the calibration of non-common path errors on NFIRAOS
},
  year = {2016},
  volume = {9909},
  pages = {99096E-99096E-13},
  doi = {10.1117/12.2233043},
  abstract = {
We propose two methods to characterize the Non-Common Path Aberrations (NCPA) on the TMT/NFIRAOS system; these techniques are known as Phase Diversity and Focal Plane Sharpening. We demonstrate the feasibility of these techniques on an experimental bench. We also explore the operational effects of Phase Diversity and how it might be best applied to a NFIRAOS-like system. In particular we explore the technique of single image Phase Diversity along with the effects of i) estimating either Zernike modes or Disk Harmonics, ii) using multiple diverse images, and iii) using diversities other than focus. These operational considerations are explored in a simulation of the NFIRAOS system and we aim to find the best estimation of the NFIRAOS NCPA in the presence of different levels of noise. We find a realistic estimation of NFIRAOS NCPA would be with multi-image Phase Diversity - with focus-diverse images sampled at asymmetric positions on either side of the focal plane (with no estimation of the object).
},
  url = { http://dx.doi.org/10.1117/12.2233043},
  journal = {Proc. SPIE}
}

% 2015
@INPROCEEDINGS{correia15a,
  author = {Correia, C.~M. and Jackson, Kate and Konnik, Mikhail and Veran, Jean-Pierre and Andersen, David and Lardi`ere, Olivier and Bradley, Colin},
  title = {Spatio-angular Linear Quadratic Gaussian algorithm for prediction and control in Tomographic Systems},
  year = {2015},
  volume = {1},
  number = {1},
  abstract = {We present the spatio-angular Linear Quadratic Gaussian algorithm for tem- poral wave-front prediction and minimum-variance control in tomographic adaptive optics systems. We have fully validated the algorithm in the lab and on-sky with the Raven multi-object science and technology demonstrator installed on the Subaru telescope. We report 2 stellar magnitudes improve- ment in limiting magnitude which provides roughly a factor 5 better sky- coverage. We further address sparse implementations and compliance with ELT-sized systems. The algorithm is particularly suitable to laser-tomography systems both for the high order correction or for optimal modal tilt anisopla- natism compensation in split tomography. We review parameter identification methods and robustness metrics ahead of major design phases for LTAO and MOAO instruments.},
  url = {http://escholarship.org/uc/ao4elt4},
  journal = {Adaptive Optics for Extremely Large Telescopes 4 --Conference Proceedings}
}

@INPROCEEDINGS{neichel15,
  author = {Neichel, Benoit and Fusco, Thierry and Sauvage, Jean-Francois and Correia, C.~M. and Dohlen, Kjetil and Thatte, Niranjan and Clarke, Fraser and Gray, Morgan and Schwartz, Noah and Schnetler, Hermine and Bryson, Ian and Tecza, Matthias and Vernet, Joel},
  title = {The AO modes for HARMONI: from classical to Laser-assisted tomographic AO systems},
  year = {2015},
  volume = {1},
  number = {1},
  abstract = {HARMONI is a visible and near-infrared integral feld spectrograph, providing the E-ELT’s core spectroscopic capability. It will exploit the E-ELT’s scientific niche in its early years, starting at first light. To get the full sensitivity and spatial resolution gain, HARMONI will work at di raction limited scales. This will be possible thanks to two adaptive optics systems, complementary to each other. Both systems will make use of the telescope’s adaptive M4 and M5 mirrors. The first one is a simple but effcient Single Conjugate AO system (good performance, low sky coverage), fully integrated in HARMONI itself. The second one is a Laser Tomographic AO system (medium performance, very good sky coverage). In this paper, we present the overall design of the SCAO system and discuss the complementary between SCAO and LTAO for HARMONI. Performance and system design trade-o s are discussed. The development process allowing to effciently going from SCAO to LTAO is also described. In that respect, the rational for wave front sensor choices is presented as well as the first preliminary conclusions, and overall design choices.},
  url = {http://escholarship.org/uc/ao4elt4},
  journal = {Adaptive Optics for Extremely Large Telescopes 4 --Conference Proceedings}
}

@INPROCEEDINGS{fusco15,
  author = {Fusco, Thierry and Pueyo, Laurent and Correia, C.~M. and Hugot, Emmanuel and Jahn, Wilfried and Neichel, Benoit and Ferrari, Marc},
  title = {New concepts of modified Shack-Hartman for an elongation-free wavefront sensing of Na-Laser guide stars},
  year = {2015},
  volume = {1},
  number = {1},
  abstract = {Laser Guide Star (LGS) WaveFront Sensing (and especially multi LGS WFS) is a key aspect for the next generation of Wide Filed AO (WFAO) systems on Extremely Large Telescopes (ELT). One of the main limitation of Na- LGS, especially for 30-40 m class telescopes is the spot elongation induced by the geometrical projection of the width of the illuminated Na layer onto the WFS sub-apertures. In addition with an inevitable loss of performance due to the physical structure itself, this spot elongation leads to very complex and costly detectors in order to accommodate the large spot extension in each sub-aperture. Moreover, some trade-o s to minimize the number of pixels with either undersampling or truncation of the elongated SH-spots will induce non-linearity and bias e ects which, through the propagation through the to- mographic reconstruction process, will dramatically a ect the final WFAO performance. We propose here innovative optical modifications of the SH- WFS concept which will significantly reduce the spot elongation before the physical detection by the CCD without any significant loss in flux nor perfor- mance. These approaches, based on free form optics and complex amplitude remapping technics should allow obtaining a WFS design with 16 to 25 less pixels than the current ones and thus making possible the use of already ex- isting devices. It will also avoid the use of complex centroiding measurements making the whole WFS process simpler, faster and more robust.},
  url = {http://escholarship.org/uc/ao4elt4},
  journal = {Adaptive Optics for Extremely Large Telescopes 4 --Conference Proceedings}
}

@INPROCEEDINGS{bond15,
  author = {Bond, Charlotte and Fusco, Thierry and Correia, C.~M. and Veran, Jean-Pierre and Telxeira, Joel},
  title = {Local Ensemble Transform Kalman Filter: a fast non-stationary control law for SCAO and XAO systems on ELTs},
  year = {2015},
  volume = {1},
  number = {1},
  doi = {10.20353/K3T4CP1131555},
  abstract = {The discrete sampling of a wave-front using a Shack-Hartmann sensor limits the maximum spatial frequencywe can measure and impacts sensitivity to frequencies at the high end of the correction band due to aliasing.Here we present Wiener lters for wave-front reconstruction in the spatial-frequency domain, ideally suited forsystems with a high number of degrees of freedom. We develop a theoretical anti-aliasing (AA) Wiener lterthat optimally takes into account high-order wave-front terms folded in-band during the sensing (i.e., discretesampling) process. We present Monte-Carlo simulation results for residual wave- fronts and propagated noise andcompare to standard reconstruction techniques (in the spatial domain). To cope with nite telescope aperturewe've developed and optimised a Gerchberg-Saxton like iterative-algorithm that provides superior performance.},
  url = {http://www.escholarship.org/uc/item/1367c5xw},
  journal = {Adaptive Optics for Extremely Large Telescopes 4 --Conference Proceedings}
}

@INPROCEEDINGS{bond15a,
  author = {Bond, Charlotte and El Hadi, Kacem and Sauvage, Jean-Francois and Fusco, Thierry and Coreia, C.~M. and Fauvarque, Olivier and Neichel, Benoit},
  title = {Full AO-loop study with an optmized Pyramid-WFS: toward the first SCAO systems for the E-ELT},
  year = {2015},
  volume = {1},
  number = {1},
  doi = {10.20353/K3T4CP1131555},
  abstract = {Within the E-ELT framework studies, the Laboratoire d’Astrophysique de Marseille (LAM) is highly involved in the preparation of the SCAO system of HARMONI, the E-ELT’s 1st light IFU. The current baseline WFS for this AO system is a Pyramid WFS using a high speed and sensitive OCAM2 camera (FR of 1.5 kHz and RON close to zero).
This paper presents the complete laboratory characterization of an AO sys- tem based on Pyramid-WFS. We combine this hands-on approach with the- oretical and simulation modeling of Pyramid behavior with respect to the choice of observables (numerical combination of standard Pyramid signals). From this know-how, we propose in this paper early considerations for E- ELT first instrumentation about upgraded Pyramid-WFS based AO system (NCPA compensation, Optimal modal gains).},
  url = {http://www.escholarship.org/uc/item/1367c5xw},
  journal = {Adaptive Optics for Extremely Large Telescopes 4 --Conference Proceedings}
}

@INPROCEEDINGS{morris15,
  author = {Morris, Tim and Basden, Alastair and Bey, Trisan and Chemla, Fanny and Conan, Jean-Marc and Correia, C.~M. and Dohlen, Kjetil and Fusco, Thierry and Gendron, Eric and Gratadour, Damien and Jagourel, Pascal and Myers, Richard and Neichel, Benoit and Petit, Cyril and Rees, Phil and Rousset, Gerard},
  title = {AO for MOSAIC, the E-ELT Multiple Object Spectrograph},
  year = {2015},
  volume = {1},
  number = {1},
  doi = {10.20353/K3T4CP1131557},
  url = {http://www.escholarship.org/uc/item/7019b6vc},
  date-added = {2016-08-16 12:02:15 +0000},
  date-modified = {2016-08-16 12:02:15 +0000},
  journal = {Adaptive Optics for Extremely Large Telescopes 4 --Conference Proceedings},
  n2 = {MOSAIC is the proposed multiple object spectrograph for the E-ELT that will eventually combine two AO observing modes within a single instrument. MOSAIC will contain up to 20 open-loop multiple object AO channels feeding NIR IFUs in addition to up to 200 seeing-limited (or GLAO corrected) VIS --NIR fibre pickoffs. Wavefront tomography will be implemented using a combination of LGS and a few high-order NGS distributed across the field with the wavefront correction applied in a split open/closed loop configuration. MOSAIC will be the only E-ELT instrument planned that can utilize the full 10 arcminute diameter field of view, enabling highly efficient observing modes for this workhorse instrument. Use of the full E-ELT field inevitably requires a closer integration between the telescope control system and the instrument AO systems, however this can bring several potential benefits to overall system performance. Here we present the initial design concept and baseline performance of the MOSAIC instrument and AO system(s) taking advantage of the CANARY on-sky results and inheriting from the previous Phase A study of EAGLE. Finally, we will highlight areas of system performance and calibration that will require further analysis and trade-off during the course of the upcoming Phase A study.},
  ty = {JOUR},
  year1 = {2015-01-01},
  bdsk-url-1 = {http://www.escholarship.org/uc/item/7019b6vc},
  bdsk-url-2 = {http://dx.doi.org/10.20353/K3T4CP1131557}
}

@INPROCEEDINGS{lamb15,
  author = {Lamb, Masen and Andersen, David and Veran, Jean-Pierre and Correia, C.~M. and Lardiere, Olivier},
  title = {Calibrating the Non-Common Path Aberrations on the MOAO system RAVEN and},
  year = {2015},
  volume = {1},
  number = {1},
  doi = {10.20353/K3T4CP1131535},
  url = {http://www.escholarship.org/uc/item/51x9d368},
  date-added = {2016-08-16 12:01:30 +0000},
  date-modified = {2016-08-16 12:01:30 +0000},
  journal = {Adaptive Optics for Extremely Large Telescopes 4 --Conference Proceedings},
  n2 = {Contemporary AO systems, such as the Multi-Object Adaptive Optics system (MOAO) RAVEN currently associated with the Subaru Telescope, can suer from signicant Non-Common Path Aberrations (NCPA). These errors ultimately aect image quality and arise from optical path dierences between the wavefront sensor (WFS) path and the science path. A typical correction of NCPA involves estimating the aberration phase and correcting the system with an oset on the deformable mirror (DM). We summarize two methods used to correct for NCPA on an experimental bench. We also successfully calibrate the NCPA on RAVEN using one of these methods. Finally, we report on some rst science results with RAVEN, obtained after NCPA correction.},
  ty = {JOUR},
  year1 = {2015-01-01},
  bdsk-url-1 = {http://www.escholarship.org/uc/item/51x9d368},
  bdsk-url-2 = {http://dx.doi.org/10.20353/K3T4CP1131535}
}

@INPROCEEDINGS{lardiere15,
  author = {Lardiere, Olivier and Dave, Andersen and Bradley, Colin and Oya, Shin and Ono, Yoshito and Gamroth, Darryl and Correia, Carlos and Lamb, Masen},
  title = {On-sky results of Raven, a MOAO science demonstrator at Subaru Telescope},
  year = {2015},
  volume = {1},
  number = {1},
  doi = {10.20353/K3T4CP1131703},
  url = {http://www.escholarship.org/uc/item/9xx3208w},
  date-added = {2016-08-16 12:00:25 +0000},
  date-modified = {2016-08-16 12:00:25 +0000},
  journal = {Adaptive Optics for Extremely Large Telescopes 4 --Conference Proceedings},
  n2 = {Raven is a Multi-Object Adaptive Optics science demonstrator which has been used on-sky at Subaru telescope from May 2014 to July 2015. Raven has been developed at the University of Victoria AO Lab, in partnership with NRC, NAOJ and Tohoku University. Raven includes three open loop WFSs, a central laser guide star WFS, and two science pick-off arms feeding light to the Subaru IRCS spectrograph. Raven supports different AO modes: SCAO, open-loop GLAO and MOAO. This paper gives an overview of the instrument design, compares the on-sky performance of the different AO modes and presents some of the science results achieved with MOAO.},
  ty = {JOUR},
  year1 = {2015-01-01},
  bdsk-url-1 = {http://www.escholarship.org/uc/item/9xx3208w},
  bdsk-url-2 = {http://dx.doi.org/10.20353/K3T4CP1131703}
}

% 2014
@INPROCEEDINGS{jackson14,
  author = {Jackson, K. and Correia, C.~M. and Lardiere, O. and Andersen, D. and 
	Bradley, C. and {Pham}, L. and {Blain}, C. and {Nash}, R. and 
	{Gamroth}, D. and Veran, J.-P.},
  title = {Tomography and calibration for Raven: from simulations to laboratory results},
  booktitle = {Adaptive Optics Systems IV},
  year = {2014},
  month = {jul},
  volume = {9148},
  series = {\procspie},
  eid = {91482K},
  pages = {91482K},
  doi = {10.1117/12.2057034},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  url = {http://cdsads.u-strasbg.fr/abs/2014SPIE.9148E..2KJ}
}

@INPROCEEDINGS{marois14,
  author = {{Marois}, C. and Correia, C.~M. and Veran, J.-P. and {Currie}, T.
	},
  title = {TLOCI: A Fully Loaded Speckle Killing Machine},
  booktitle = {IAU Symposium},
  year = {2014},
  month = {jan},
  volume = {299},
  series = {IAU Symposium},
  pages = {48-49},
  editor = {{Booth}, M. and {Matthews}, B.~C. and {Graham}, J.~R.},
  doi = {10.1017/S1743921313007813},
  keywords = {stars: imaging, instrumentation: adaptive optics, methods: data analysis, techniques: image processing, (stars:) planetary systems,},
  url = {http://adsabs.harvard.edu/abs/2014IAUS..299...48M}
}

@INPROCEEDINGS{conan14,
  author = {Conan, R. and Correia, C.~M.},
  title = {Object-oriented Matlab adaptive optics toolbox},
  year = {2014},
  volume = {9148},
  pages = {91486C-91486C-17},
  doi = {10.1117/12.2054470},
  abstract = {Object-Oriented Matlab Adaptive Optics (OOMAO) is a Matlab toolbox
	dedicated to Adaptive Optics (AO) systems. OOMAO is based on a small
	set of classes representing the source, atmosphere, telescope, wavefront
	sensor, Deformable Mirror (DM) and an imager of an AO system. This
	simple set of classes allows simulating Natural Guide Star (NGS)
	and Laser Guide Star (LGS) Single Conjugate AO (SCAO) and tomography
	AO systems on telescopes up to the size of the Extremely Large Telescopes
	(ELT). The discrete phase screens that make the atmosphere model
	can be of infinite size, useful for modeling system performance on
	large time scales. OOMAO comes with its own parametric influence
	function model to emulate different types of DMs. The cone effect,
	altitude thickness and intensity profile of LGSs are also reproduced.
	Both modal and zonal modeling approach are implemented. OOMAO has
	also an extensive library of theoretical expressions to evaluate
	the statistical properties of turbulence wavefronts. The main design
	characteristics of the OOMAO toolbox are object-oriented modularity,
	vectorized code and transparent parallel computing. OOMAO has been
	used to simulate and to design the Multi-Object AO prototype Raven
	at the Subaru telescope and the Laser Tomography AO system of the
	Giant Magellan Telescope. In this paper, a Laser Tomography AO system
	on an ELT is simulated with OOMAO. In the first part, we set-up the
	class parameters and we link the instantiated objects to create the
	source optical path. Then we build the tomographic reconstructor
	and write the script for the pseudo-open-loop controller.},
  url = { http://dx.doi.org/10.1117/12.2054470},
  journal = {Proc. SPIE}
}

@INPROCEEDINGS{marois14a,
  author = {Marois, Christian and Correia, C.~M. and Galicher, Raphael and Ingraham, Patrick and Macintosh, Bruce and Currie, Thayne and De Rosa, Rob},
  title = {GPI PSF subtraction with TLOCI: the next evolution in exoplanet/disk high-contrast imaging},
  year = {2014},
  volume = {9148},
  pages = {91480U-91480U-13},
  doi = {10.1117/12.2055245},
  url = { http://dx.doi.org/10.1117/12.2055245},
  journal = {Proc. SPIE}
}

@INPROCEEDINGS{lardiere14,
  author = {Lardiere, Olivier and Andersen, Dave and Blain, Celia and Bradley, Colin and Gamroth, Darryl and Jackson, Kate and Lach, Przemek and Nash, Reston and Venn, Kim and Veran, Jean-Pierre and Correia, C.~M. and Oya, Shin and Hayano, Yutaka and Terada, Hiroshi and Ono, Yoshito and Akiyama, Masayuki},
  title = {
Multi-object adaptive optics on-sky results with Raven
},
  year = {2014},
  volume = {9148},
  pages = {91481G-91481G-14},
  doi = {10.1117/12.2055480},
  abstract = {Raven is a Multi-Object Adaptive Optics (MOAO) technical and science demonstrator which had its first light at the Subaru telescope on May 13-14, 2014. Raven was built and tested at the University of Victoria AO Lab before shipping to Hawai`i. Raven includes three open loop wavefront sensors (WFSs), a central laser guide star WFS, and two independent science channels feeding light to the Subaru IRCS spectrograph. Raven supports different kinds of AO correction: SCAO, open-loop GLAO and MOAO. The MOAO mode can use different tomographic reconstructors, such as Learn-and-Apply or a model-based reconstructor. This paper presents the latest results obtained in the lab, which are consistent with simulated performance, as well as preliminary on-sky results, including echelle spectra from IRCS. Ensquared energy obtained on sky in 140mas slit is 17%, 30% and 41% for GLAO, MOAO and SCAO respectively. This result confirms that MOAO can provide a level of correction in between GLAO and SCAO, in any direction of the field of regard, regardless of the science target brightness.},
  url = { http://dx.doi.org/10.1117/12.2055480},
  journal = {Proc. SPIE}
}

@INPROCEEDINGS{wang14,
  author = {Wang, Lianqi and Gilles, Luc and Ellerbroek, Brent and Correia, C.~M.},
  title = {Physical optics modeling of sky coverage for TMT NFIRAOS with advanced LQG controller},
  year = {2014},
  volume = {9148},
  pages = {91482J-91482J-10},
  doi = {10.1117/12.2056583},
  abstract = {
We have implemented the linear quadratic Gaussian (LQG) controller in our physical optics sky coverage simulator (MAOS) for the Thirty Meter Telescope (TMT) Narrow Field InFrared Adaptive Optics System (NFIRAOS) aimed for improved correction of tip/tilt and plate scale modes. The LQG controller has a built-in capability to correct narrow frequency vibrations that are above the closed loop bandwidth of the system and is a very desirable solution for this application. The LQG controller is tuned with the combined power spectral density (PSD) of turbulence, wind shake, and vibration computed from the telemetry. We will show how LQG performs for various telescope/instrument vibration spectral (such as broadband or drifting peaks). We will also show the performance and sky coverage of LQG in comparison with single or double integrator controllers for correcting low order atmospheric turbulence with a set of up to three tip/tilt(/focus) natural guide star wavefront sensors. We found that the LQG controller reduces the median sky coverage wavefront error by 25 nm in quadrature.},
  url = { http://dx.doi.org/10.1117/12.2056583},
  journal = {Proc. SPIE}
}

@INPROCEEDINGS{gilles14,
  author = {Gilles, L. and Raynaud, H. F. and Correia, C.~M. and Wang, L. and Ellerbroek, B. and Boyer, C. and Kulcsar, C.},
  title = {Kalman filter design for atmospheric tip/tilt, tip/tilt anisoplanatism and focus filtering on extremely large telescopes},
  year = {2014},
  volume = {9148},
  pages = {91484L-91484L-9},
  doi = {10.1117/12.2057400},
  abstract = {This paper discusses Kalman filter design to correct for atmospheric tip/tilt, tip/tilt anisoplanatism and focus disturbances in laser guide star multi-conjugate adaptive optics. Model identification, controller design and computation, command oversampling and disturbance rejection are discussed via time domain analysis and control performance evaluation. End-to-end high-fidelity sky-coverage simulations are presented by Wang and co-authors in a companion paper.},
  url = { http://dx.doi.org/10.1117/12.2057400},
  journal = {Proc. SPIE}
}

@INPROCEEDINGS{lamb14,
  author = {Lamb, Masen and Andersen, David and Veran, Jean-Pierre and Correia, C.~M. and Herriot, Glen and Rosensteiner, Matthias and Fiege, Jason},
  title = {
Non-common path aberration corrections for current and future AO systems
},
  year = {2014},
  volume = {9148},
  pages = {914857-914857-13},
  doi = {10.1117/12.2055198},
  abstract = {
We explore two methods of quantifying and correcting non-common path aberrations (NCPA) both in simulation and on an experimental bench. The first method, called Focal Plane Sharpening (FPS), utilizes an optimization algorithm to maximize the peak intensity of the PSF by varying actuator patterns on a deformable mirror (DM). The second method employs the technique of Phase Diversity (PD) to estimate NCPA by use of PSF images in and out of the focal plane. The experimental tests use a 52 actuator ALPAO DM and 1000 actuator MEMS DM to provide an offset for NCPA correction. Each method shows to be successful in simulation, however FPS is the only method used successfully on an experimental bench; although work is on-going to successfully demonstrate PD. Our aim is to use one or both methods to determine the best approach to NCPA calibration on the MOAO system RAVEN, and extend this calibration method to future systems such as TMT's NFIRAOS.
},
  url = { http://dx.doi.org/10.1117/12.2055198},
  journal = {Proc. SPIE}
}

% 2013
@INPROCEEDINGS{correia13a,
  author = {Correia, C.~M. and Veran, J.-P. and {Guyon}, O. and {Clergeon}, C.
	},
  title = {Wave-front reconstruction for the non-linear curvature wave-front sensor},
  booktitle = {Proceedings of the Third AO4ELT Conference},
  year = {2013},
  month = {dec},
  editor = {{Esposito}, S. and {Fini}, L.},
  doi = {10.12839/AO4ELT3.13290},
  url = {http://dx.doi.org/10.12839/AO4ELT3.13290}
}

@INPROCEEDINGS{lardiere13,
  author = {Lardiere, O. and Andersen, D. and Bradley, C. and 
	{Blain}, C. and {Gamroth}, D. and Jackson, K. and {Lach}, P. and 
	{Nash}, R. and {Oya}, S. and {Pham}, L. and Veran, J.-P. and 
	Correia, C.~M.},
  title = {Current status of Raven, a MOAO science demonstrator for Subaru},
  booktitle = {Proceedings of the Third AO4ELT Conference},
  year = {2013},
  month = {dec},
  editor = {{Esposito}, S. and {Fini}, L.},
  doi = {10.12839/AO4ELT3.15991},
  url = {http://dx.doi.org/10.12839/AO4ELT3.15991}
}

@INPROCEEDINGS{clergeon13,
  author = {{Clergeon}, C. and {Guyon}, O. and {Martinache}, F. and Veran, J.-P. and 
	{Gendron}, E. and {Rousset}, G. and Correia, C.~M. and {Garrel}, V.
	},
  title = {The Subaru Coronagraphic Extreme AO High Speed and High Sensitivity Wavefront Sensors},
  booktitle = {Proceedings of the Third AO4ELT Conference},
  year = {2013},
  month = {dec},
  editor = {{Esposito}, S. and {Fini}, L.},
  doi = {10.12839/AO4ELT3.13398},
  url = {http://dx.doi.org/10.12839/AO4ELT3.13398}
}

% 2012
@INPROCEEDINGS{jackson12,
  author = {Jackson, K. and Correia, C.~M. and Lardiere, O. and Andersen, D.
	and Bradley, C. and Nash, R.},
  title = {Tomography for Raven, a Multi-Object Adaptive Optics Science and
	Technology Demonstrator},
  booktitle = {Proceedings of the AMOS conference},
  year = {2012},
  url = {www.amostech.com/TechnicalPapers/2012/POSTER/JACKSON.pdf},
  owner = {tcacolaco},
  timestamp = {2013.04.12}
}

@INPROCEEDINGS{jackson12a,
  author = {Jackson, Kate and Correia, C.~M. and Lardiere, Olivier and Andersen,
	David and Bradley, Colin},
  title = {Tomographic wavefront error estimation and measurement for Raven,
	a multi-object adaptive optics demonstrator},
  booktitle = {Proc. of the SPIE},
  year = {2012},
  pages = {84475F-84475F-7},
  doi = {10.1117/12.925865},
  url = {http://dx.doi.org/10.1117/12.925865},
  bdsk-url-1 = {http://dx.doi.org/10.1117/12.925865},
  date-added = {2012-10-19 16:43:51 -0700},
  date-modified = {2012-10-23 10:01:04 -0700}
}

@INPROCEEDINGS{andersen12a,
  author = {Andersen, David R. and Bradley, C. and Lardiere, O. and Blain,
	C. and Correia, C.~M. and Desmarais, R. and Gamroth, D. and Ito, M.
	and Jackson, K. and Lach, P. and Nash, R. and Pham, L. and Veran,
	J.-P.},
  title = {Status of the Raven MOAO science demonstrator},
  booktitle = {Proc. of the SPIE},
  year = {2012},
  pages = {84473F-84473F-12},
  doi = {10.1117/12.926854},
  url = {http://dx.doi.org/10.1117/12.926854},
  bdsk-url-1 = {http://dx.doi.org/10.1117/12.926854},
  date-added = {2012-10-19 16:42:28 -0700},
  date-modified = {2012-10-23 12:36:13 -0700}
}

@INPROCEEDINGS{herriot12,
  author = {Herriot, Glen and Andersen, David and Atwood, Jenny and Byrnes, Peter
	and Boucher, Marc-Andre and Boyer, Corinne and Caputa, Kris and
	Correia, C.~M. and Dunn, Jennifer and Ellerbroek, Brent and Fitzsimmons,
	Joeleff and Gilles, Luc and Hickson, Paul and Hill, Alexis and Kerley,
	Dan and Pazder, John and Reshetov, Vlad and Roberts, Scott and Smith,
	Malcolm and Veran, Jean-Pierre and Wang, Lianqi and Wevers, Ivan},
  title = {TMT NFIRAOS: adaptive optics system for the Thirty Meter Telescope},
  booktitle = {Proc. of the SPIE},
  year = {2012},
  pages = {84471M-84471M-9},
  doi = {10.1117/12.925087},
  url = {http://dx.doi.org/10.1117/12.925087},
  bdsk-url-1 = {http://dx.doi.org/10.1117/12.925087},
  date-added = {2012-10-19 16:40:03 -0700},
  date-modified = {2012-11-26 06:19:11 -0800}
}

@INPROCEEDINGS{ellerbroek12,
  author = {Ellerbroek, Brent L. and Adkins, Sean M. and Andersen, David R. and
	Atwood, Jenny and Bastard, Arnaud and Bo, Yong and Boucher, Marc-Andre
	and Boyer, Corinne and Byrnes, Peter W. G. and Caputa, Kris and Chen,
	Shanqiu and Correia, C.~M. and Cousty, Raphael and Fitzsimmons,
	Joeleff T. and Gilles, Luc and Gregory, James and Herriot, Glen and
	Hickson, Paul and Hill, Alexis and Pazder, John and Pages, Hubert
	and Pfrommer, Thomas and Reshetov, Vladimir A. and Roberts, Scott
	and Sinquin, Jean-Christophe and Schoeck, Matthias and Smith, Malcolm
	and Veran, Jean-Pierre and Wang, Lianqi and Wei, Kai and Wevers,
	Ivan},
  title = {TMT adaptive optics program status report},
  booktitle = {Proc. of the SPIE},
  year = {2012},
  pages = {84471J-84471J-12},
  doi = {10.1117/12.927046},
  url = {http://dx.doi.org/10.1117/12.927046},
  bdsk-url-1 = {http://dx.doi.org/10.1117/12.927046},
  date-added = {2012-10-19 16:37:24 -0700},
  date-modified = {2012-11-26 06:18:52 -0800}
}

@INPROCEEDINGS{kulcsar12,
  author = {Kulcsar, Caroline and Sivo, Gaetano and Raynaud, Henri-Francois and Neichel, Benoit and Rigaut, François and Christou,
	Julian and Guesalaga, Andres and Correia, C.~M. and Veran, Jean-Pierre
	and Gendron, Eric and Vidal, Fabrice and Rousset, Gerard and
	Morris, Tim and Esposito, Simone and Quiros-Pacheco, Fernando and
	Agapito, Guido and Fedrigo, Enrico and Pettazzi, Lorenzo and Clare,
	Richard and Muradore, Riccardo and Guyon, Olivier and Martinache,
	Frantz and Meimon, Serge and Conan, Jean-Marc},
  title = {Vibrations in AO control: a short analysis of on-sky data around
	the world},
  booktitle = {Proc. of the SPIE},
  year = {2012},
  pages = {84471C-84471C-14},
  doi = {10.1117/12.925984},
  url = {http://dx.doi.org/10.1117/12.925984},
  bdsk-url-1 = {http://dx.doi.org/10.1117/12.925984},
  date-added = {2012-10-19 16:35:34 -0700},
  date-modified = {2012-10-19 16:36:01 -0700}
}

@INPROCEEDINGS{veran12,
  author = {Veran, Jean-Pierre and McWeigh, Eric and Andersen, David and
	Correia, C.~M. and Herriot, Glen and Pazder, John},
  title = {The HIA MCAO laboratory bench},
  booktitle = {Proc. of the SPIE},
  year = {2012},
  pages = {844750-844750-12},
  doi = {10.1117/12.927236},
  url = {http://dx.doi.org/10.1117/12.927236},
  bdsk-url-1 = {http://dx.doi.org/10.1117/12.927236},
  date-added = {2012-10-19 16:32:05 -0700},
  date-modified = {2012-10-23 10:01:18 -0700}
}

@INPROCEEDINGS{gilles12a,
  author = {Gilles, L. and Correia, C.~M. and Veran, J.-P. and Wang, L. and
	Ellerbroek, B. L.},
  title = {Tip/tilt point spread function reconstruction for laser guide star
	multi-conjugate adaptive optics},
  booktitle = {Proc. of the SPIE},
  year = {2012},
  pages = {844729-844729-9},
  doi = {10.1117/12.926928},
  url = {http://dx.doi.org/10.1117/12.926928},
  bdsk-url-1 = {http://dx.doi.org/10.1117/12.926928},
  date-added = {2012-10-19 16:29:35 -0700},
  date-modified = {2012-10-23 10:00:47 -0700}
}

@INPROCEEDINGS{marois12,
  author = {Marois, Christian and Veran, Jean-Pierre and Correia, C.~M.},
  title = {A Fresnel propagation analysis of NFIRAOS/IRIS high-contrast exoplanet
	imaging capabilities},
  booktitle = {Proc. of the SPIE},
  year = {2012},
  pages = {844726-844726-10},
  doi = {10.1117/12.926826},
  url = {http://dx.doi.org/10.1117/12.926826},
  bdsk-url-1 = {http://dx.doi.org/10.1117/12.926826},
  date-added = {2012-10-19 16:25:58 -0700},
  date-modified = {2012-10-23 10:01:13 -0700}
}

@INPROCEEDINGS{correia12b,
  author = {Correia, C.~M. and Veran, Jean-Pierre and Herriot, Glen and
	Ellerbroek, Brent and Wang, Lianqi and Gilles, Luc},
  title = {Advanced control of low order modes in laser guide star multi-conjugate
	adaptive optics systems},
  booktitle = {Proc. of the SPIE},
  year = {2012},
  pages = {84471S-84471S-12},
  doi = {10.1117/12.926872},
  url = {http://dx.doi.org/10.1117/12.926872},
  bdsk-url-1 = {http://dx.doi.org/10.1117/12.926872},
  date-added = {2012-10-19 16:23:23 -0700},
  date-modified = {2012-11-26 06:13:24 -0800}
}

% 2011
@INPROCEEDINGS{herriot11,
  author = {Herriot, G. and Andersen, D. and Atwood, J. and Byrnes, P. and 
	Boyer, C. and Caputa, K. and Correia, C.~M. and Dunn, J. and 
	Ellerbroek, B. and Fitzsimmons, J. and Gilles, L. and 
	Hickson, P. and Hill, A. and Pazder, J. and Reshetov, V. and 
	Smith, M. and Veran, J.-P. and Wang, L. and Wevers, I.
	},
  title = {NFIRAOS Multiconjugate AO System for TMT},
  booktitle = {Second International Conference on Adaptive Optics for Extremely Large Telescopes. Online at <A href=''http://ao4elt2.lesia.obspm.fr''>http://ao4elt2.lesia.obspm.fr</A>, id.19},
  year = {2011},
  month = {sep},
  eid = {19},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  url = {http://ao4elt2.lesia.obspm.fr/spip.php?article518}
}

@INPROCEEDINGS{correia11a,
  author = {Correia, C.~M. and Veran, J.-P. and Herriot, G. and Ellerbroek,
	B.~L. and Wang, Lianqi and Gilles, L.},
  title = {Advanced control of NGS modes in TMT-NFIRAOS using split-tomography},
  booktitle = {OSA Topical Meeting - AO},
  year = {2011},
  month = {jul}
}

@INPROCEEDINGS{correia11b,
  author = {Correia, C.~M. and Veran, J.-P. and Ellerbroek, B. and Gilles, L. and
	Wang, L.},
  title = {Laser-Guide Star Point-Spread Function Reconstruction for ELTs},
  booktitle = {2nd AO4ELT Conference - Adaptive Optics for Extremely Large Telescopes
	proceedings AO4ELT Conference - Adaptive Optics for Extremely Large
	Telescopes proceedings},
  year = {2011},
  url = {http://ao4elt2.lesia.obspm.fr/spip.php?article705},
  timestamp = {2013.04.12}
}

@INPROCEEDINGS{correia11c,
  author = {Correia, C.~M. and Veran, J.-P. and Herriot, G. and Ellerbroek,
	B.~L. and Wang, L. and Gilles, L.},
  title = {Vibration Suppression Algorithms for NFIRAOS on TMT},
  booktitle = {2nd AO4ELT Conference - Adaptive Optics for Extremely Large Telescopes
	proceedings AO4ELT Conference - Adaptive Optics for Extremely Large
	Telescopes proceedings},
  year = {2011},
  url = {http://ao4elt2.lesia.obspm.fr/spip.php?article704},
  date-added = {2013-01-03 22:12:30 -0800},
  date-modified = {2013-01-03 22:13:56 -0800}
}

@INPROCEEDINGS{herriot11a,
  author = {Herriot, Glen Herriot and Andersen, David R. and Atwood, Jenny and
	Correia, C.~M. and Byrnes, Peter and Boyer, Corinne and Caputa,
	Kris and Dunn, Jennifer and Ellerbroek, Brent and Fitzsimmons, Joeleff
	and Gilles, Luc and Hickson, Paul and Hill, Alexis and Pazder, John
	and Reshetov, Vlad and Roberts, Scott and Smith, Malcolm and Veran,
	Jean-Pierre and Wang, Lianqi and Wevers, Ivan},
  title = {NFIRAOS ---TMT Early Light Adaptive Optics System},
  booktitle = {Adaptive Optics: Methods, Analysis and Applications},
  year = {2011},
  pages = {AWA4},
  publisher = {Optical Society of America},
  keywords = {Active or adaptive optics; Atmospheric turbulence},
  abstract = {NFIRAOS is the early-light facility Adaptive Optics System for the
	Thirty Meter Telescope. We present the specifications, novel architecture
	and design of NFIRAOS},
  url = {http://www.opticsinfobase.org/abstract.cfm?URI=AO-2011-AWA4},
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  date-added = {2012-09-14 16:40:48 -0700},
  date-modified = {2012-09-14 16:44:48 -0700},
  journal = {Adaptive Optics: Methods, Analysis and Applications}
}

@INPROCEEDINGS{correia11d,
  author = {Correia, C.~M. and Veran, Jean-Pierre and Poyneer, Lisa},
  title = {Gemini Planet Imager minimum-variance tip-tilt controllers},
  booktitle = {Adaptive Optics: Methods, Analysis and Applications},
  year = {2011},
  pages = {AMB2},
  publisher = {Optical Society of America},
  keywords = {Active or adaptive optics; Computation methods},
  url = {http://www.opticsinfobase.org/abstract.cfm?URI=AO-2011-AMB2},
  journal = {Adaptive Optics: Methods, Analysis and Applications}
}

@INPROCEEDINGS{gilles11,
  author = {Gilles, L. and Ellerbroek, B.~L. and Wang, Lianqi and Veran,
	J.-P. and Correia, C.~M.},
  title = {Point Spread Function Reconstruction for Laser Guide Star Multi Conjugate Adaptive Optics Systems on Extremely Large Telescopes},
  booktitle = {2nd AO4ELT Conference - Adaptive Optics for Extremely Large Telescopes
	proceedings},
  year = {2011}
}

@INPROCEEDINGS{marois11,
  author = {Marois, C. and Veran, J.-P. and Atwood, J. and Correia, C.~M.
	and Herriot, G.},
  title = {TMT High-Contrast Imaging with NFIRAOS/IRIS},
  booktitle = {2nd AO4ELT Conference - Adaptive Optics for Extremely Large Telescopes
	proceedings},
  year = {2011}
}

% 2010
@INPROCEEDINGS{correia10a,
  author = {{Correia}, Carlos and {Conan}, Jean-Marc and {Kulcs{\'a}r}, Caroline and
 {Raynaud}, Henri-Fran{\c{c}}ois and {Petit}, Cyril},
  title = {Adapting optimal LQG methods to ELT-sized AO systems},
  booktitle = {Adaptative Optics for Extremely Large Telescopes},
  year = {2010},
  month = {Jan},
  eid = {07003},
  pages = {07003},
  doi = {10.1051/ao4elt/201007003},
  adsurl = {https://ui.adsabs.harvard.edu/#abs/2010aoel.confE7003C},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  url = {http://dx.doi.org/10.1051/ao4elt/201007003}
}

@INPROCEEDINGS{quirospacheco10,
  author = {{Quir{\'o}s-Pacheco}, Fernando and {Correia}, Carlos and {Esposito},
 Simone},
  title = {Fourier transform-wavefront reconstruction for the pyramid wavefront
 sensor},
  booktitle = {Adaptative Optics for Extremely Large Telescopes},
  year = {2010},
  month = {Jan},
  eid = {07005},
  pages = {07005},
  doi = {10.1051/ao4elt/201007005},
  adsurl = {https://ui.adsabs.harvard.edu/#abs/2010aoel.confE7005Q},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  url = {http://dx.doi.org/10.1051/ao4elt/201007005}
}

@INPROCEEDINGS{montilla10,
  author = {{Montilla}, I. and {B{\'e}chet}, C. and {Lelouarn}, M. and {Correia}, C.
 and {Tallon}, M. and {Reyes}, M. and {Thi{\'e}baut}, {\'E}.},
  title = {Comparison of Reconstruction and Control algorithms on the ESO end-to-
 end simulator OCTOPUS},
  booktitle = {Adaptative Optics for Extremely Large Telescopes},
  year = {2010},
  month = {Jan},
  eid = {03002},
  pages = {03002},
  doi = {10.1051/ao4elt/201003002},
  adsurl = {https://ui.adsabs.harvard.edu/#abs/2010aoel.confE3002M},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  url = {http://dx.doi.org/10.1051/ao4elt/201003002}
}

% 2009
@INPROCEEDINGS{correia09,
  author = {C. Correia and H. Raynaud and C. Kulcsár and J. Conan},
  title = {Accounting for mirror dynamics in optimal Adaptive Optics control},
  booktitle = {2009 European Control Conference (ECC)},
  year = {2009},
  month = {Aug},
  pages = {3515-3520},
  doi = {10.23919/ECC.2009.7074944},
  keywords = {active disturbance rejection control;adaptive control;adaptive optics;astronomical telescopes;atmospheric turbulence;continuous time systems;discrete time systems;linear quadratic Gaussian control;mirrors;multivariable control systems;optical control;optimal control;stochastic systems;tip-tilt DM control;European extremely large telescope;E-ELT;performance degradation evaluation;standard reconstructed feedback;discrete-time stochastic model;discrete-time LQG formulation;LTI DM;hybrid continuous-discrete time MV control problem;MVP;multivariable minimum-variance disturbance rejection problem;AO design;ground-based telescopes images;atmospheric turbulence;deformable mirror;AO systems;optimal adaptive optics control;mirror dynamics;Telescopes;Mirrors;Atmospheric modeling;Standards;Adaptive optics;Computational modeling;Europe},
  url = {http://dx.doi.org/10.23919/ECC.2009.7074944}
}

@INPROCEEDINGS{correia09a,
  author = {Correia, C.~M. and Raynaud, Henri-Francois and Kulcsar,
	Caroline and Conan, Jean-Marc},
  title = {Minimum Variance Control for the Woofer-Tweeter Concept},
  booktitle = {Adaptive Optics: Methods, Analysis and Applications},
  year = {2009},
  pages = {AOWB4},
  publisher = {Optical Society of America},
  keywords = {Atmospheric and oceanic optics ; Active or adaptive optics; Optical
	devices; mirrors},
  url = {http://www.opticsinfobase.org/abstract.cfm?URI=AO-2009-AOWB4},
  bdsk-url-1 = {http://www.opticsinfobase.org/abstract.cfm?URI=AO-2009-AOWB4},
  journal = {Adaptive Optics: Methods, Analysis and Applications}
}

@INPROCEEDINGS{kulcsar09,
  author = {Kulcsar, Caroline and Raynaud, Henri-Francois and Conan,
	Jean-Marc and Correia, C.~M. and Petit, Cyril},
  title = {Control Design and Turbulent Phase Models in Adaptive Optics: A State-Space
	Interpretation},
  booktitle = {Adaptive Optics: Methods, Analysis and Applications},
  year = {2009},
  pages = {AOWB1},
  publisher = {Optical Society of America},
  keywords = {Atmospheric and oceanic optics ; Active or adaptive optics; Atmospheric
	turbulence},
  url = {http://www.opticsinfobase.org/abstract.cfm?URI=AO-2009-AOWB1},
  bdsk-url-1 = {http://www.opticsinfobase.org/abstract.cfm?URI=AO-2009-AOWB1},
  journal = {Adaptive Optics: Methods, Analysis and Applications}
}

% 2008
@INPROCEEDINGS{raynaud08,
  author = {Raynaud, H. F. and Kulcsar, C. and Correia, C.~M. and
	Conan, J.-M.},
  title = {Multirate LQG AO control},
  booktitle = {Proc. of the SPIE},
  year = {2008},
  volume = {7015},
  number = {1},
  eid = {701538},
  pages = {701538},
  editor = {Hubin, Norbert and Max, Claire E. and Wizinowich, Peter L.},
  publisher = {SPIE},
  doi = {10.1117/12.789231},
  url = {http://link.aip.org/link/?PSI/7015/701538/1},
  bdsk-file-1 = {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},
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  bdsk-url-2 = {http://dx.doi.org/10.1117/12.789231},
  date-modified = {2011-04-01 12:09:08 -0700},
  journal = {Adaptive Optics systems},
  location = {Marseille, France},
  numpages = {6}
}

@INPROCEEDINGS{correia08,
  author = {Correia, C.~M. and Raynaud, Henri-Francois and Kulcsar,
	Caroline and Conan, Jean-Marc},
  title = {Globally optimal minimum mean-square error control in adaptive optical
	systems with mirror dynamics},
  booktitle = {Proc. of the SPIE},
  year = {2008},
  volume = {7015},
  number = {1},
  eid = {70151F},
  pages = {70151F},
  editor = {Hubin, Norbert and Max, Claire E. and Wizinowich, Peter L.},
  publisher = {SPIE},
  doi = {10.1117/12.788459},
  url = {http://link.aip.org/link/?PSI/7015/70151F/1},
  bdsk-url-1 = {http://link.aip.org/link/?PSI/7015/70151F/1},
  bdsk-url-2 = {http://dx.doi.org/10.1117/12.788459},
  journal = {Adaptive Optics systems},
  location = {Marseille, France},
  numpages = {12}
}

@INPROCEEDINGS{correia08a,
  author = {Correia, C.~M. and Kulcsar, Caroline and Conan, Jean-Marc and
	Raynaud, Henri-Francois},
  title = {Hartmann modelling in the discrete spatial-frequency domain: application
	to real-time reconstruction in adaptive ooptics},
  booktitle = {Proc. of the SPIE},
  year = {2008},
  volume = {7015},
  number = {1},
  eid = {701551},
  pages = {701551},
  editor = {Hubin, Norbert and Max, Claire E. and Wizinowich, Peter L.},
  publisher = {SPIE},
  doi = {10.1117/12.788455},
  url = {http://link.aip.org/link/?PSI/7015/701551/1},
  bdsk-url-1 = {http://link.aip.org/link/?PSI/7015/701551/1},
  bdsk-url-2 = {http://dx.doi.org/10.1117/12.788455},
  journal = {Adaptive Optics systems},
  location = {Marseille, France},
  numpages = {12}
}

% 2007
@INPROCEEDINGS{correia07,
  author = {{Correia}, C. and {Conan}, J. -M. and {Kulcs{\'a}r}, C. and {Raynaud},
 H. -F. and {Petit}, C. and {Fusco}, T.},
  title = {Fourier-domain wave-front reconstruction for large adaptive optical
 systems},
  booktitle = {SF2A-2007: Proceedings of the Annual meeting of the French Society of Astronomy and Astrophysics},
  year = {2007},
  month = {Jul},
  pages = {25},
  editor = {{Bouvier}, J. and {Chalabaev}, A. and {Charbonnel}, C.},
  adsurl = {https://ui.adsabs.harvard.edu/#abs/2007sf2a.conf...25C},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  url = {https://ui.adsabs.harvard.edu/#abs/2007sf2a.conf...25C}
}

% 2006
@INPROCEEDINGS{correia06,
  author = {Correia, C.~M. and Fedrigo, Enrico and Louarn, M. Le and Verinaud,
	C. and Korkiakoski, V.},
  title = {Multi-rate control of high-order adaptive optics systems},
  year = {2006},
  volume = {6272},
  number = {1},
  eid = {62722R},
  pages = {62722R},
  editor = {Ellerbroek, Brent L. and Calia, Domenico Bonaccini},
  publisher = {SPIE},
  doi = {10.1117/12.672236},
  url = {http://link.aip.org/link/?PSI/6272/62722R/1},
  bdsk-url-1 = {http://link.aip.org/link/?PSI/6272/62722R/1},
  bdsk-url-2 = {http://dx.doi.org/10.1117/12.672236},
  journal = {Advances in Adaptive Optics II},
  location = {Orlando, FL, USA},
  numpages = {12}
}

@INPROCEEDINGS{muradore06,
  author = {Muradore, Riccardo and Fedrigo, Enrico and Correia, C.~M.},
  title = {LQ control design for adaptive optics systems based on MIMO identified
	model},
  year = {2006},
  volume = {6272},
  number = {1},
  eid = {62725H},
  pages = {62725H},
  editor = {Ellerbroek, Brent L. and Calia, Domenico Bonaccini},
  publisher = {SPIE},
  doi = {10.1117/12.671946},
  url = {http://link.aip.org/link/?PSI/6272/62725H/1},
  bdsk-url-1 = {http://link.aip.org/link/?PSI/6272/62725H/1},
  bdsk-url-2 = {http://dx.doi.org/10.1117/12.671946},
  journal = {Advances in Adaptive Optics II},
  location = {Orlando, FL, USA},
  numpages = {12}
}

@INPROCEEDINGS{verinaud06,
  author = {Verinaud, C. and Hubin, N. and Kasper, M. and Antichi, J. and Baudoz,
	P. and Beuzit, J.-L. and Boccaletti, A. and Chalabaev, A. and Dohlen,
	K. and Fedrigo, E. and Correia, C.~M. and Feldt, M. and Fusco,
	T. and Gandorfer, A. and Gratton, R. and Kuntschner, H. and Kerber,
	F. and Lenzen, R. and Martinez, P. and Coarer, E. Le and Longmore,
	A. and Mouillet, D. and Navarro, R. and Paillet, J. and Rabou, P.
	and Rahoui, F. and Selsis, F. and Schmid, H. M. and Soummer, R. and
	Stam, D. and Thalmann, C. and Tinbergen, J. and Turatto, M. and Yaitskova,
	N.},
  title = {The EPICS project for the European Extremely Large Telescope: outcome
	of the Planet Finder concept study for OWL},
  year = {2006},
  volume = {6272},
  number = {1},
  eid = {62720M},
  pages = {62720M},
  editor = {Ellerbroek, Brent L. and Calia, Domenico Bonaccini},
  publisher = {SPIE},
  doi = {10.1117/12.671641},
  url = {http://link.aip.org/link/?PSI/6272/62720M/1},
  bdsk-url-1 = {http://link.aip.org/link/?PSI/6272/62720M/1},
  bdsk-url-2 = {http://dx.doi.org/10.1117/12.671641},
  journal = {Advances in Adaptive Optics II},
  location = {Orlando, FL, USA},
  numpages = {12}
}

% 2005
@INPROCEEDINGS{correia05,
  author = {Correia, C.~M. and Fedrigo, Enrico and Le Louarn, Miska and Verinaud,
	Christophe},
  title = {Estimation Stratagies for SCAO and GLAO},
  year = {2005},
  month = {jun},
  journal = {OSA Topical Meetings},
  localfile = {ccorreia05_SCAO_GLAO_strategies_OSA_may05.pdf}
}


%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%%%%%%%%%% Seminars & Invited Talks
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%

% 2018
@SEMINAR{correia18a,
  author = {Correia, C.~M.},
  title = {Making it up to E(A)LT’s: extremely (adaptive) large telescopes -or- stable observations when everything else varies…},
  booktitle = {CRAL - Obs. Lyon},
  month = {May},
  year = {2018},
  howpublished = {personal communication},
  talk = {Making it up to E(A)LT’s: extremely (adaptive) large telescopes -or- stable observations when everything else varies…}
}

% 2016
@SEMINAR{correia16b,
  author = {Correia, C.~M.},
  title = {Adaptive optics in the Extremely Large Telescope era: new requirements, new concepts
and new challenges},
  booktitle = {Univ Catolica Chile},
  month = {Nov.},
  year = {2016},
  howpublished = {personal communication},
  talk = {Adaptive optics in the Extremely Large Telescope era: new requirements, new concepts
and new challenges}
}

@SEMINAR{correia16c,
  author = {Correia, C.~M.},
  title = {Gemstone Adaptive Optics: jewellery to be deployed on next generation systems},
  booktitle = {Gemini South Observatory},
  month = {Nov.},
  year = {2016},
  howpublished = {personal communication},
  talk = {Gemstone Adaptive Optics: jewellery to be deployed on next generation systems}
}

@SEMINAR{correia16d,
  author = {Correia, C.~M.},
  title = {Harmoni @ E-ELT: project status},
  booktitle = {Giant Magellan Telescope Project Office},
  month = {Jun.},
  year = {2016},
  howpublished = {personal communication}
}

% 2014
@SEMINAR{correia14b,
  author = {Correia, C.~M.},
  title = {Iterative Strehl-optimal regulators},
  booktitle = {Workshop Local ETKF for Adaptive Optics on ELTs, LAM, Marseille},
  month = {Nov.},
  year = {2014},
  howpublished = {personal communication}
}

@SEMINAR{correia14c,
  author = {Correia, C.~M.},
  title = {Anti-aliasing Wiener filtering for wave-front reconstruction in the spatial-frequency domain for high-order astronomical adaptive-optics systems},
  booktitle = {Herzberg Institute of Astrophysics, Victoria BC Canada},
  month = {Nov.},
  year = {2014},
  howpublished = {personal communication}
}

@SEMINAR{correia14d,
  author = {Correia, C.~M.},
  title = {Developments and science with High-Contrast Imaging instruments},
  booktitle = {Centre for Astrophysics of Univ. of Porto (CAUP)},
  month = {Sep.},
  year = {2014},
  howpublished = {personal communication}
}

% 2013
@SEMINAR{correia13b,
  author = {Correia, C.~M.},
  title = {Modelling adaptive-optics for wide-field and high-contrast imaging systems on ELT- sized telescopes},
  booktitle = {Laboratoire d'Astrophysique de Marseille (LAM)},
  month = {Dec.},
  year = {2013},
  howpublished = {personal communication}
}

@SEMINAR{correia13c,
  author = {Correia, C.~M.},
  title = {Raven MOAO science and technology demonstrator for Subaru 8m telescope},
  booktitle = {Paris Observatory at Meudon (Paris)},
  month = {Nov.},
  year = {2013},
  howpublished = {personal communication}
}

@SEMINAR{correia13d,
  author = {Correia, C.~M.},
  title = {Adaptive Optics @HIA ???},
  booktitle = {Herzberg Institute of Astrophysics, Victoria BC Canada},
  month = {Jan.},
  year = {2013},
  howpublished = {personal communication}
}

% 2012
@SEMINAR{correia12c,
  author = {Correia, C.~M.},
  title = {Extremely Large Telescopes era: (high-resolution) instrumentation, challenges, opportunities},
  booktitle = {Centre for Astrophysics of Univ. of Porto (CAUP)},
  month = {Mar.},
  year = {2012},
  howpublished = {personal communication}
}

% 2009
@SEMINAR{correia09b,
  author = {Correia, C.~M.},
  title = {Optimal Reconstruction and Control for Adaptive Optics systems},
  booktitle = {Herzberg Institute of Astrophysics},
  month = {Oct.},
  year = {2009},
  howpublished = {personal communication}
}

@SEMINAR{correia09c,
  author = {Correia, C.~M.},
  title = {Optimal Reconstruction and Control Strategies for Extremely Large Telescopes},
  booktitle = {Arcetri Observatory, Florence},
  month = {May},
  year = {2009},
  howpublished = {personal communication}
}

@SEMINAR{correia09d,
  author = {Correia, C.~M.},
  title = {Conception de lois de commande a hautes performances pour l’optique adaptative des grands/tres grands telescopes},
  booktitle = {Journees des Doctorants en Physique, ONERA},
  month = {Jan.},
  year = {2009},
  howpublished = {personal communication}
}

% 2007
@SEMINAR{correia07a,
  author = {Correia, C.~M.},
  title = {Adaptive Optics for Future Telescopes -- wave-front reconstruction
	and control},
  booktitle = {University of Padova},
  month = {July},
  year = {2007},
  howpublished = {personal communication}
}

% 2005
@SEMINAR{correia05a,
  author = {Correia, C.~M.},
  title = {Adaptive Optics for future giant telescopes - strategies for wave-front
	reconstruction},
  booktitle = {Center for Astrophysics, Univ. Porto},
  month = {Oct.},
  year = {2005},
  howpublished = {personal communication}
}

% 2004
@SEMINAR{correia04,
  author = {Correia, C.~M.},
  title = {Adaptive Optics Simulators},
  booktitle = {``1st Iberian Meeting Researchers in Optics'', Univ. Porto},
  month = {May},
  year = {2004},
  howpublished = {personal communication}
}


%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%%%%%%%%%% PhD Thesis
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%

% 2010
@PHDTHESIS{correia10b,
  author = {Correia, C.~M.},
  title = {Design of high-performance control laws for very/extremely large
	astronomical Telescopes},
  school = {E. D. Galilee, Univ. Paris XIII},
  year = {2010},
  month = {Mar},
  url = {http://tel.archives-ouvertes.fr/tel-00516866},
  pdf = {https://tel.archives-ouvertes.fr/tel-00516866/document}
}


%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%%%%%%%%%% Technical Reports
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%

% 2011
@TECHREPORT{correia11e,
  author = {Correia, C.~M.},
  title = {Gemini Planet Imager Tip/Tilt controller},
  institution = {Herzberg Institute of Astrophysics},
  year = {2011},
  number = {1},
  date-added = {2013-01-19 11:00:26 -0800},
  date-modified = {2013-01-19 11:01:02 -0800}
}

% 2006
@TECHREPORT{correia06a,
  author = {Correia, C.~M.},
  title = {Multi-stage reconstructor},
  institution = {ESO - European Southern Observatory},
  year = {2006}
}


%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%%%%%%%%%% Software
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%

% 2021
@MISC{fusco21,
  author = {{Fusco}, Thierry and {Bacon}, Roland and {Kamann}, Sebastian and {Conseil}, Simon and {Neichel}, Benoit and {Correia}, Carlos and {Beltramo-Martin}, Olivier and {Vernet}, Joel and {Kolb}, Johan and {Madec}, Pierre-Yves},
  title = {MUSE-PSFR: PSF reconstruction for MUSE WFM-AO mode},
  year = {2021},
  howpublished = {Astrophysics Source Code Library, record ascl:2102.012},
  adsurl = {https://ui.adsabs.harvard.edu/abs/2021ascl.soft02012F},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  month = {feb},
  eid = {ascl:2102.012},
  archiveprefix = {ascl},
  eprint = {2102.012}
}


%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%%%%%%%%%% Misc
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%

% 2015
@MISC{mortier15a,
  author = {Mortier, A. and Faria, J.~P. and Correia, C.~M. and Santerne, A. and 
	Santos, N.~C.},
  title = {BGLS: A Bayesian formalism for the generalised Lomb-Scargle periodogram},
  year = {2015},
  howpublished = {Astrophysics Source Code Library},
  url = {http://adsabs.harvard.edu/abs/2015ascl.soft04020M},
  adsnote = {Provided by the SAO/NASA Astrophysics Data System},
  keywords = {Software},
  month = {apr},
  archiveprefix = {ascl},
  eprint = {1504.020}
}

