Laser-only Adaptive Optics Achieves Significant Image Quality Gains Compared to Seeing-limited Observations over the Entire Sky
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Christoph Baranec | Nicholas M. Law | Ward S. Howard | Reed Riddle | Carl A. Ziegler | R. Riddle | N. Law | C. Baranec | C. Ziegler | W. Howard
[1] A. S. Fruchter,et al. Drizzle: A Method for the Linear Reconstruction of Undersampled Images , 1998 .
[2] Christoph Baranec,et al. The Performance of the Robo-AO Laser Guide Star Adaptive Optics System at the Kitt Peak 2.1-m Telescope , 2017 .
[3] Christoph Baranec,et al. ROBO-AO KEPLER PLANETARY CANDIDATE SURVEY. II. ADAPTIVE OPTICS IMAGING OF 969 KEPLER EXOPLANET CANDIDATE HOST STARS , 2016, 1604.08604.
[4] Laurent M. Mugnier,et al. Sub-pixel image registration with a maximum likelihood estimator. Application to the first adaptive optics observations of Arp 220 in the L' band , 2005 .
[5] J. Hardy,et al. Adaptive Optics for Astronomical Telescopes , 1998 .
[6] Pravin Chordia,et al. HIGH-EFFICIENCY AUTONOMOUS LASER ADAPTIVE OPTICS , 2014, 1407.8179.
[7] Prasanth H. Nair,et al. Astropy: A community Python package for astronomy , 2013, 1307.6212.
[8] Gurjeet Singh,et al. Optomechanical design of Altair, the Gemini adaptive optics system , 1998, Astronomical Telescopes and Instrumentation.
[9] M. Kasper,et al. Adaptive Optics for Astronomy , 2012, 1201.5741.
[10] David Charbonneau,et al. Rejecting Astrophysical False Positives from the TrES Transiting Planet Survey: The Example of GSC 03885–00829 , 2006 .
[11] John Asher Johnson,et al. ROBOTIC LASER ADAPTIVE OPTICS IMAGING OF 715 KEPLER EXOPLANET CANDIDATES USING ROBO-AO , 2013, 1312.4958.
[12] M. R. Haas,et al. Kepler Mission Design, Realized Photometric Performance, and Early Science , 2010, 1001.0268.
[13] R. Riddle,et al. The rapid transient surveyor , 2016, Astronomical Telescopes + Instrumentation.
[14] G. Chabrier. Galactic Stellar and Substellar Initial Mass Function , 2003, astro-ph/0304382.
[15] Howard Isaacson,et al. LHS 6343 C: A TRANSITING FIELD BROWN DWARF DISCOVERED BY THE KEPLER MISSION , 2010, 1008.4141.
[16] Roberto Biasi,et al. A near-infrared tip-tilt sensor for the Keck I laser guide star adaptive optics system , 2014, Astronomical Telescopes and Instrumentation.
[17] D. Charbonneau,et al. THE OCCURRENCE OF POTENTIALLY HABITABLE PLANETS ORBITING M DWARFS ESTIMATED FROM THE FULL KEPLER DATASET AND AN EMPIRICAL MEASUREMENT OF THE DETECTION SENSITIVITY , 2015, 1501.01623.
[18] Jessie L. Dotson,et al. KEPLER SCIENCE OPERATIONS , 2010, 1001.0437.
[19] Travis E. Oliphant,et al. Python for Scientific Computing , 2007, Computing in Science & Engineering.
[20] D. Gavel,et al. Characterizing the Adaptive Optics Off-Axis Point-Spread Function. II. Methods for Use in Laser Guide Star Observations* , 2005 .
[21] Philippe Réfrégier,et al. Maximum-likelihood estimation of an astronomical image from a sequence at low photon levels , 1998 .
[22] T. Schulz,et al. High-resolution imaging at low-light levels through weak turbulence , 1990 .