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Bringing the visible universe into focus with Robo-AO.
Christoph Baranec
, Reed Riddle
, Nicholas M. Law
, A. N. Ramaprakash
, Shriharsh P. Tendulkar
, Khanh Bui
, Mahesh P. Burse
, Pravin Chordia
, Hillol K. Das
, Jack T.C. Davis
, Richard G. Dekany
, Mansi M. Kasliwal
, Shrinivas R. Kulkarni
, Timothy D. Morton
,
Eran O. Ofek
, Sujit Punnadi
Department of Particle Physics and Astrophysics
Weizmann Institute of Science
Research output
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Contribution to journal
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Article
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peer-review
Overview
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Keyphrases
Angular Resolution
100%
Robo
100%
Light Wave
60%
Bright Stars
60%
Wavefront Sensor
60%
Laser Guide Star
60%
Hubble Space Telescope
40%
Diffraction Limit
40%
Adaptive Optics
40%
Sensor Measurement
40%
Primary Mirror
40%
Visible Spectrum
20%
Diffraction
20%
At a Distance
20%
Optical System
20%
Ultraviolet Laser
20%
Atmospheric Turbulence
20%
Index of Refraction
20%
One Solution
20%
Space Telescope
20%
Non-planar
20%
Turbulent Atmosphere
20%
Keep up
20%
Planar Wave
20%
Imaging Target
20%
Optical Telescope
20%
Inhomogeneous Atmosphere
20%
Deformable Mirror
20%
High-power Laser Beam
20%
Astronomical Adaptive Optics
20%
Long-exposure Images
20%
Adaptive Optics Calibration
20%
Instantaneous Image
20%
Physics
Protective Atmosphere
100%
Adaptive Optics
60%
Laser Guide Stars
60%
Hubble Space Telescope
40%
Laser Beam
20%
Ultraviolet Laser
20%
Atmospheric Turbulence
20%
High Power Lasers
20%
Optical Telescopes
20%
Ground Telescopes
20%
Deformable Mirror
20%