Neural network assisted high flexibility and high resolution Shack-Hartmann wavefront sensing for astronomical observation in darker sky areas

Author:

Zheng Yamin12ORCID,Zhang Yifan12ORCID,Guo Liquan12,Li Pei12ORCID,Wang Zichao12,Zhuang Yongchen12ORCID,Lin Shibing12,Tian Yuan3,Cai Zheng3,Huang Lei12ORCID

Affiliation:

1. Key Laboratory of Photonic Control Technology (Tsinghua University), Ministry of Education

2. State Key Laboratory of Precision Space-time Information Sensing Technology

3. Tsinghua University

Abstract

Shack-Hartmann (SH) wavefront sensing is widely applied to astronomical observations with its fast and accurate measurement. However, due to the computational nature of SH that the input beam is segmented to provide local wavefront slopes, the sampling density of the sub-apertures and the calculation accuracy of each sub-focal spot’s centroid have great influence on the wavefront reconstruction accuracy. Therefore, it is usually difficult to achieve high resolution wavefront reconstruction for dark stars in the astronomical observations with insufficient light intensity. We present a neural-network assisted high resolution SH wavefront sensing method to overcome the shortages and obtain results with enhanced resolution from the separated information inside each sub-aperture. With this method, high resolution wavefront sensing in darker sky area could be realized.

Funder

National Natural Science Foundation of China

Publisher

Optica Publishing Group

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