Cite this article:
Bin He, Li-Fa Hu, Da-Yu Li, Huan-Yu Xu, Xing-Yun Zhang, Shao-Xin Wang, Yu-Kun Wang, Cheng-Liang Yang, Zhao-Liang Cao, Quan-Quan Mu, Xing-Hai Lu, Li Xuan. A high precision phase reconstruction algorithm for multi-laser guide stars adaptive opticsJ. Chin. Phys. B, 2016, 25(9): 094214.
| Bin He, Li-Fa Hu, Da-Yu Li, Huan-Yu Xu, Xing-Yun Zhang, Shao-Xin Wang, Yu-Kun Wang, Cheng-Liang Yang, Zhao-Liang Cao, Quan-Quan Mu, Xing-Hai Lu, Li Xuan. A high precision phase reconstruction algorithm for multi-laser guide stars adaptive opticsJ. Chin. Phys. B, 2016, 25(9): 094214. |
A high precision phase reconstruction algorithm for multi-laser guide stars adaptive optics
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Abstract
Adaptive optics (AO) systems are widespread and considered as an essential part of any large aperture telescope for obtaining a high resolution imaging at present. To enlarge the imaging field of view (FOV), multi-laser guide stars (LGSs) are currently being investigated and used for the large aperture optical telescopes. LGS measurement is necessary and pivotal to obtain the cumulative phase distortion along a target in the multi-LGSs AO system. We propose a high precision phase reconstruction algorithm to estimate the phase for a target with an uncertain turbulence profile based on the interpolation. By comparing with the conventional average method, the proposed method reduces the root mean square (RMS) error from 130 nm to 85 nm with a 30% reduction for narrow FOV. We confirm that such phase reconstruction algorithm is validated for both narrow field AO and wide field AO. -
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