Interference pattern with an analytical solution in modified Shack-Hartmann sensor

Xiaoyang Li, Xu Yang, Bincheng Li, Shengqian Wang, H. Xian
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Abstract

Segmented telescope is an effective way to realize high-resolution observations in astronomy. An important work for high-resolution observations using segmented telescopes is phasing the segmented primary mirror. Modified Shack-Hartmann sensor. Is proposed for piston error detection. The interference pattern created by a circular lens placed across two adjacent mirrors in exit pupil plane is used as the signal of the modified Shack-Hartmann sensor. Piston errors need to be extracted from the interference pattern. The offset of lens and gap error of adjacent mirrors causes the distortion of interference pattern, and leads to a reduction in the detection accuracy of existing piston error extraction techniques. In this paper, we propose to replace the circular lens with a square lens and the mathematical model of the corresponding interference pattern is modeled by Fourier optics, including the one-dimensional and two-dimensional analytical solution of the interference pattern. The simulation results show that the proposed analytical solution can effectively characterize the interference pattern in the ideal situation and in the presence of lateral offset of the lens and the gap error of the adjacent mirrors situation. The results presented here give a deeper insight into the interference pattern of modified Shack-Hartmann sensor, and are of great help for developing new piston error detection techniques based on modified Shack-Hartmann sensor.
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改进Shack-Hartmann传感器干涉图样的解析解
在天文学中,分段望远镜是实现高分辨率观测的有效途径。利用分段望远镜进行高分辨率观测的一项重要工作是对分段主镜进行相位调整。改进的Shack-Hartmann传感器。提出了活塞误差检测方法。在出瞳平面上放置一个圆透镜,穿过两个相邻的反射镜所产生的干涉图样被用作改进的沙克-哈特曼传感器的信号。活塞误差需要从干涉图样中提取出来。透镜的偏移和相邻反射镜的间隙误差导致干涉图畸变,降低了现有活塞误差提取技术的检测精度。本文提出用方形透镜代替圆形透镜,并利用傅里叶光学建立相应干涉图样的数学模型,包括干涉图样的一维解析解和二维解析解。仿真结果表明,在理想情况下以及存在透镜侧偏和相邻镜间隙误差的情况下,所提出的解析解能够有效地表征干涉图样。本文的研究结果对改进的Shack-Hartmann传感器的干涉规律有了更深入的了解,对基于改进的Shack-Hartmann传感器的活塞误差检测新技术的开发有很大的帮助。
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