非接触式原位低相干干涉法测量反射望远镜校正透镜中心表面气隙和厚度

Yu-sheng Liu, Sheng-Feng Lin
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引用次数: 0

摘要

由于传统的遥感反射望远镜采用负屈光度透镜结构,校正透镜的光学特性产生发散,导致透镜中心厚度和透镜界面间气隙测量困难。解决这一问题的一种方法是在遥感反射望远镜透镜优化过程中在像侧加装一个正屈光度透镜,这样就可以通过低相干干涉法从像侧精确测量透镜中心厚度和透镜间表面气隙距离。本研究采用低相干干涉法的非接触式原位测量方法,在一次扫描中测量了封闭校正透镜的透镜中心厚度和透镜间中心表面气隙距离,在评估和验证过程中取得了重大进展。便于在装配、集成和后续环境测试过程中确定校正透镜是否符合遥感仪器的要求规格。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lens center surface air gaps and thickness measurement in catadioptric telescope corrector lens using non-contact in situ low-coherence interferometry
Due to the negative diopter lens constructions of conventional remote sensing catadioptric telescopes, the corrector lens produces divergent optical property, resulting in difficulties of measuring the center thickness of the lenses and the air gaps between lens interfaces. One solution to address this issue is to incorporate a positive diopter lens on the image side during the optimization of remote sensing catadioptric telescope lenses and thus the lens center thickness as well as interlens surface air gap distances can be measured accurately from the image side by low-coherence interferometry. In this study, the lens center thickness and inter-lens center surface air gap distances of an enclosed corrector lens was measured in a single scan by using non-contact in situ measurement method of low-coherence interferometry and resulted in a significant advancement in the assessment and verification process. It facilitated the determination of whether the corrector lens met the required specifications of remote-sensing instrument during the process of assembly, integration, and successive environmental testing.
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