Quasi-static aberrations induced by laser guide stars in adaptive optics
Marcos A. van Dam, Antonin Bouchez, D. Le Mignant, Peter Wizinowich
Abstract
Marcos A. van Dam, Antonin Bouchez, D. Le Mignant, Peter Wizinowich
Abstract
Laser Guide Star Adaptive Optics (LGS AO) systems use the return from an artificial guide star to measure the wavefront aberrations in the direction of the science object. We observe quasi-static differences between the measured wavefront and the wavefront aberration of the science object. This paper quantifies and explains the source of the difference between the wavefronts measured using an LGS and a natural guide star at the W. M. Keck Observatory, which can be as high as 1000 nm RMS.
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Laser Guide Star Adaptive Optics (LGS AO) systems use the return from an artificial guide star to measure the wavefront aberrations in the direction of the science object. We observe quasi-static differences between the measured wavefront and the wavefront aberration of the science object. This paper quantifies and explains the source of the difference between the wavefronts measured using an LGS and a natural guide star at the W. M. Keck Observatory, which can be as high as 1000 nm RMS.
Key concepts: Wavefront, Adaptive optics, Laser guide star, Guide star, Optics, Physics, Wavefront sensor, Deformable mirror