使用柔性金属微结构的可调谐红外滤波器

T. Ohnstein, J. Zook, James A. Cox, B. Speldrich, T. Wagener, H. Guckel, T. Christenson, E. T. Klein, I. Glasgow
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引用次数: 13

摘要

如果焦平面可调滤光片具有高透射、宽接收角度和宽可调性,那么红外成像和传感技术的革命性进步将成为可能。可调高通传输滤波器非常适合于增强光学探测器和成像系统的能力。大多数光学探测器具有低能量截止特性,由探测器材料的能带隙或光电发射阈值设定。可调谐的高通频率滤波器将允许在探测器材料的有用波长范围内改变长波长截止。随着滤波器截止波长的减少,探测器输出的减少将提供引起探测器响应的辐射的光谱含量的直接测量。因此,传统的宽带探测器和成像仪可以编程,以提供光谱信息以及总强度信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tunable IR filters using flexible metallic microstructures
Revolutionary advances in infrared (IR) imaging and sensing technology would be possible if focal plane tunable filters with high transmission, wide acceptance angles, and wide tunability were available. Tunable high-pass transmission filters are ideally suited for enhancing the capability of optical detectors and imaging systems. Most optical detectors have a characteristic low-energy cutoff, set by the energy bandgap or photoemission threshold of the detector material. A tunable high-pass frequency filter would allow variation of the long-wavelength cutoff over the useful wavelength range of the detector material. The decrease in detector output as the filter cutoff wavelength is decreased would provide direct measurement of the spectral content of the radiation causing the detector response. Thus, conventional broadband detectors and imagers could be programmed to give spectral information as well as total intensity information.
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