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大口径巡天望远镜分区域曲率传感方法研究

Sub region curvature sensing method for survey telescope with larger aperture

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【作者】 安其昌吴小霞张景旭李洪文朱嘉康蔡雨岐

【Author】 AN Qi-chang;WU Xiao-xia;ZHANG Jing-xu;LI Hong-wen;ZHU Jia-kang;CAI Yu-qi;Changchun Institute of Optics,Fine Mechanics and Physics,Chinese Academy of Sciences;Jilin Provincial Key Laboratory of Intelligent Wavefront Sensing and Control;University of Chinese Academy of Sciences;Harbin Institute of Technology;

【通讯作者】 安其昌;

【机构】 中国科学院长春光学精密机械与物理研究所吉林省智能波前传感与控制重点实验室中国科学院大学哈尔滨工业大学

【摘要】 大口径巡天望远镜需要基于波前传感系统的反馈,进行主动光学闭环校正,以更好地发挥其极限探测能力。本文面向大口径巡天望远镜波前传感过程中,离焦星点像重合所导致的导星数量下降的问题,首先针对分区域曲率传感的基本理论表达进行了推导,之后,通过建立联合仿真模型,利用光学设计软件与数值计算软件之间的通讯交互,对分区域曲率传感的过程进行了仿真分析。最后,通过搭建桌面实验,分别就单目标与多目标的曲率传感进行了交叉比对,验证了算法的正确性。针对标准波前,本文所提出的方法与单导星曲率传感相比,误差为0.02个工作波长(RMS),误差在10%以内,可在传统主动光学技术的基础上,通过扩展可用导星,提升探测信噪比与采样速度,有效提升主动光学系统校正能力。

【Abstract】 The large aperture sky survey telescope needs closed-loop error correction based on the feedback of its wavefront sensing system, so as to give it a better conform to its limit detection ability. In this paper,firstly, the basic theoretical expression of sub region curvature sensing is derived. Then, a joint simulation model is established. The process of sub region curvature sensing is simulated and analyzed by using a combination of optical design software and numerical calculation software. Finally, by setting up a desktop experiment, the cross-comparison of single-and multi-target curvature sensors is carried out to verify the correctness of the algorithm. Compared to the traditional active optical technology, the method proposed in this paper can improve the detection signal-to-noise ratio and sampling speed by expanding the available guide stars. For the standard wavefront, compared with the single guide star curvature sensor, the error is 0.02 operating wavelengths(RMS), and the error is less than 10%, which can effectively improve the correction ability of the active optical system.

【基金】 国家自然科学基金项目(No.62005279,No.12133009);中国科学院青年创新促进会(No.2020221);中国科学院装备研制项目(No.YJKYYQ20200057);吉林省科技发展计划(No.20220402032GH)~~
  • 【文献出处】 中国光学(中英文) ,Chinese Optics , 编辑部邮箱 ,2023年02期
  • 【分类号】TH751
  • 【下载频次】26
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