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基于级联液晶法布里-珀罗的电调谐红外滤波器用于光谱成像检测。

Electrically tunable infrared filter based on a cascaded liquid-crystal Fabry-Perot for spectral imaging detection.

作者信息

Lin Jiuning, Tong Qing, Lei Yu, Xin Zhaowei, Wei Dong, Zhang Xinyu, Liao Jing, Wang Haiwei, Xie Changsheng

出版信息

Appl Opt. 2017 Mar 1;56(7):1925-1929. doi: 10.1364/AO.56.001925.

Abstract

An electrically tunable infrared (IR) filter based on a key cascaded liquid-crystal Fabry-Perot (C-LC-FP) working in the wavelength range of 3-5 μm is presented. The C-LC-FP is constructed by closely stacking two FP microcavities with different depths of 12 and 15 μm and fully filled by nematic LC materials. Through continuous wavelength selection of both microcavities, radiation with a high transmittance and narrow bandwidth can pass through the filter. According to the electrically controlled birefringence characteristics of nematic LC molecules, the transmission spectrum can be shifted through applying a dual voltage signal over the C-LC-FP. Compared with common LC-FPs with a single microcavity, the C-LC-FP demonstrates better transmittance peak morphology and spectral selection performance. To be more specific, the number and the shifted scope of the IR transmission peak can be decreased and widened, respectively.

摘要

本文提出了一种基于关键级联液晶法布里-珀罗(C-LC-FP)的电可调红外(IR)滤波器,其工作波长范围为3-5μm。C-LC-FP由两个深度分别为12μm和15μm的不同深度的FP微腔紧密堆叠而成,并由向列型液晶材料完全填充。通过对两个微腔进行连续波长选择,具有高透射率和窄带宽的辐射可以通过该滤波器。根据向列型液晶分子的电控双折射特性,通过在C-LC-FP上施加双电压信号,可以使透射光谱发生偏移。与具有单个微腔的普通LC-FP相比,C-LC-FP表现出更好的透射率峰值形态和光谱选择性能。更具体地说,红外透射峰的数量和偏移范围可以分别减少和拓宽。

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