Optical Path Design for Catadioptric Star Sensor with Large Aperture

2020 ◽  
Vol 49 (6) ◽  
pp. 611002-611002
Author(s):  
李建林 Jian-lin LI ◽  
雷广智 Guang-zhi LEI ◽  
白杨 Yang BAI ◽  
文延 Yan WEN ◽  
林上民 Shang-min LIN
2021 ◽  
Author(s):  
Yang Chang ◽  
Jun Fu ◽  
Zhiwen Ning ◽  
Teng Lv ◽  
Yu Huang

2018 ◽  
Vol 67 (2) ◽  
pp. 024201
Author(s):  
Xu Lin-Bo ◽  
Lu Xing-Qiang ◽  
Lei Ze-Min

Author(s):  
Wu-Feng Yeh ◽  
Junlan Wang

This paper presents the design and analysis of a novel MEMS (Micro-Electro-Mechanical System) based auto-focusing system. By combining a folded in-plane optical path design and MEMS microfabricated optical components and comb drive actuator, the auto-focusing function is achieved in a compact system with continuously adjustable imaging distances. Theoretical analysis and numerical simulation validated the feasibility of the design. The auto-focusing system presented in this work is applicable to a wide range of technological fields where high resolution imaging is desired while the space is limited.


2010 ◽  
Vol 129-131 ◽  
pp. 531-535 ◽  
Author(s):  
Yi Zhong Yu ◽  
Xiao Yu Zhou

Diskspring was used in new type of laser optical mounts for reposition. Due to stress relaxation of diskspring after long period loading, the laser optical mount’s adjusting platform would have titling drift. When a mirror mounted on the platform drifts off the collimation axial in laser resonator, it will affect the laser from normal working. Generally, a complicated laser system has many optical mounts, accumulated drift of all adjustable elements will decrease laser’s output, even lead to stop lasing. In this paper, we proposed a method that is suitable for measuring stress relaxation of precision diskspring used for laser optical mounts, comparing with normal experimental facilities for diskspring’s stress relaxation test. We use a simple optical path design, which can not only be intuition, but also measure the diskspring’s creep deformation easily with high accuracy. Comparative experimental results for the creep deformation between no prestressing, treated by 5 short terms prestressing and treated by 24 hours prestressing are given. We found that the stress relaxation amount with prestressing is 1/12 of those without prestressing, and they change directly into the stable creep deformation stage, and can be used safely. This paper also gave a instruction to optical mount manufacturer that after the optical mount are assembled, tightening adjusting screw and keeping all the disksprings in a compacted state for 24 hours, then releasing before ex-factory, this is the best way to reduce stress relaxation in diskspring and will achieve higher stability of laser.


2018 ◽  
Vol 26 (1) ◽  
pp. 62-69 ◽  
Author(s):  
朱向冰 ZHU Xiang-bing ◽  
钱立勇 QIAN Li-yong ◽  
陈瑾 CHEN Jin ◽  
崔海田 CUI Hai-tian ◽  
王元航 WANG Yuan-hang

2017 ◽  
Vol 19 (12) ◽  
pp. 125601
Author(s):  
Qiyun CHENG ◽  
Yi YU ◽  
Shaobo GONG ◽  
Min XU ◽  
Tao LAN ◽  
...  

2012 ◽  
Vol 579 ◽  
pp. 464-472
Author(s):  
Mu Chiau Xie ◽  
Fang Jung Shiou ◽  
Geo Ry Tang ◽  
Shui Fa Chuang

This article mainly focuses on the spectrum measurement of the LED semi-conductor material Gallium Arsenide/Gallium Arsenide Phosphide (GaAs/GaAs1-x Px), using Photoluminescence (PL) method, by integrating the optical path design, the mechanism design, the motion control, the image processing, and the positioning technology to accomplish the development of automatic measurement system. The innovative method of micro-photoluminescence (µ-PL) is proposed in the optical path design. A microscope objective was adopted to focus the laser light to a tiny area and by enhancing the strength of laser light unit to increase the sensitivity of the luminescence. In the past, the examination of PL was used to do the image positioning and to collect the luminescence manually in two different platforms. The developed system integrates these two light path systems, PL and image positioning, as one machine. As a result, the image positioning and luminescence measurement can be done in one machine simultaneously, to save manpower and to avoid the manual positioning error.


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