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用于微悬臂梁阵列红外成像的变形镜的光学灵敏度分析

Optical sensitivity analysis of deformed mirrors for microcantilever array IR imaging.

作者信息

Shi Haitao, Zhang Qingchuan, Qian Jian, Mao Liang, Cheng Teng, Gao Jie, Wu Xiaoping, Chen Dapeng, Jiao Binbin

机构信息

CAS Key Laboratory of Mechanical Behavior and Design of Materials, University of Science and Technology of China, Hefei, Anhui, China.

出版信息

Opt Express. 2009 Mar 16;17(6):4367-81. doi: 10.1364/oe.17.004367.

Abstract

Optical sensitivity is a major issue to improve the sensor responsivity and the spatial resolution of uncooled optomechanical focal plane arrays (FPA). The optical sensitivity is closely related to the mirror length and the undesired mirror deformation induced from the imbalanced residual stresses in different layers. In this paper, the influences of mirror length and deformation on the optical sensitivity are discussed by Fourier Optics. Theoretical analysis and experiments demonstrate that the optical sensitivity is seriously degraded by undesired mirror deformation, and that there exists an optimal mirror length which makes the optical sensitivity achieve its maximum under a certain mirror deformation. Based on the results, an optimized mirror configuration is presented to increase the optical sensitivity of substrate-free bi-material microcantilever array (SFBMA).

摘要

光学灵敏度是提高非制冷光机械焦平面阵列(FPA)的传感器响应度和空间分辨率的一个主要问题。光学灵敏度与镜长以及不同层中不平衡残余应力引起的不良镜面变形密切相关。本文通过傅里叶光学讨论了镜长和变形对光学灵敏度的影响。理论分析和实验表明,不良的镜面变形会严重降低光学灵敏度,并且在一定的镜面变形下存在一个使光学灵敏度达到最大值的最佳镜长。基于这些结果,提出了一种优化的镜面配置,以提高无基底双材料微悬臂梁阵列(SFBMA)的光学灵敏度。

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