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Stray light suppression of optical and mechanical system for telescope detection

机译:用于望远镜检测的光学和机械系统的杂散光抑制

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During telescope detection, there is atmosphere overflow and other stray light affecting the system which leads to background disturbance. Thus reduce the detection capability of the system. So it is very necessary to design mechanical structure to suppress the stray light for the telescope detection system. It can both improve the signal-to-noise and contrast of the object. This paper designs the optical and mechanical structure of the 400mm telescope. And then the main baffle, baffle vane, field stop and coating technology are used to eliminate the effect of stray light on the optical and mechanical system. Finally, software is used to analyze and simulate stray light on the whole optical and mechanical system. Using PST as the evaluating standard, separate and integrated analysis of the suppressing effect of main baffle, baffle vane and field aperture is completed. And also get the results of PST before and after eliminating the stray light. Meanwhile, the results of stray light analysis can be used to guide the design of the optical and mechanical structure. The analysis results demonstrate that reasonable optical and mechanical structure and stray light suppression measure can highly reduce the PST and also improve the detection capability of the telescope system, and the designed outside baffle, inside baffle, vanes and coating technique etc. can decrease the PST approximately 1 to 3 level.
机译:在望远镜检测过程中,大气溢出和其他杂散光会影响系统,从而导致背景干扰。从而降低了系统的检测能力。因此为望远镜探测系统设计机械结构以抑制杂散光非常必要。它可以改善对象的信噪比和对比度。本文设计了400mm望远镜的光学和机械结构。然后使用主要的挡板,挡板叶片,场阑和涂层技术来消除杂散光对光学和机械系统的影响。最后,使用软件分析和模拟整个光学和机械系统上的杂散光。以PST为评价标准,完成了对主挡板,挡板叶片和视场光阑抑制效果的单独综合分析。并且还可以获得消除杂散光之前和之后的PST结果。同时,杂散光分析的结果可用于指导光学和机械结构的设计。分析结果表明,合理的光学和机械结构以及杂散光抑制措施可以大大降低PST,并提高望远镜系统的检测能力,设计的外部挡板,内部挡板,叶片和涂层技术等可以降低PST。大约1到3级。

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