首页|Multi-field Split Curvature Wavefront Sensing and its Application in the Large Field Survey Telescope

Multi-field Split Curvature Wavefront Sensing and its Application in the Large Field Survey Telescope

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The image quality of a large field survey telescope with a fast focal ratio of the primary mirror is high sensitivity to the optical elements'misalignments and the primary mirror's deformations.To maintain good optical performance,the perturbations need to be aligned,and the tomographic reconstruction of these perturbations can be derived from wavefront sensing with multi-field points for alignment.This work undertakes a comprehensive examination related to the implementation and optimization of a multi-field split curvature wavefront sensing system,including defocus distance,signal pre-processing,deblending of overlapped doughnuts,field-dependent correction,and distorted coordinate correction.We also conduct experiments to demonstrate the application and performance of a multi-field split curvature wavefront sensing system in Mephisto.In the context of the decentering of the secondary mirror,the coefficient of determination(R)attains a high value of 0.993,indicating a robust linearity between the coma coefficients and the decentering of the secondary mirror.A comparative analysis of the simulated and experimental results shows that the difference between them is less than 0.1 λ.

Instrumentation:high angular resolutionTechniques:photometricTechniques:image processing

Zhixu Wu、Yiming Zhang、Jianan Cong、Hua Bai、Yong Xia、Rongxin Tang、Ming Li、Zhengyang Li、Xiangyan Yuan

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Institute of Space Science and Technology,Nanchang University,Nanchang 330031,China

Nanjing Institute of Astronomical Optics & Technology,CAS,Nanjing 210042,China

University of Chinese Academy of Sciences,Nanjing,Nanjing 211135,China

National Natural Science Foundation of China

12173062

2024

天文和天体物理学研究
中国科学院国家天文台

天文和天体物理学研究

CSTPCD
影响因子:0.406
ISSN:1674-4527
年,卷(期):2024.24(8)