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Determination of the embedded thermo-optical expansion coefficients of PbTe and ZnSe thin film infrared multilayers

机译:PbTe和ZnSe薄膜红外多层膜嵌入热膨胀系数的测定

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摘要

This paper reports the first derived thermo-optical properties for vacuum deposited infrared thin films embedded in multilayers. These properties were extracted from the temperature-dependence of manufactured narrow bandpass filters across the 4-17 µm mid-infrared wavelength region. Using a repository of spaceflight multi-cavity bandpass filters, the thermo-optical expansion coefficients of PbTe and ZnSe were determined across an elevated temperature range 20-160 ºC. Embedded ZnSe films showed thermo-optical properties similar to reported bulk values, whilst the embedded PbTe films of lower optical density, deviate from reference literature sources. Detailed knowledge of derived coefficients is essential to the multilayer design of temperature-invariant narrow bandpass filters for use in non-cooled infrared detection systems. We further present manufacture of the first reported temperature-invariant multi-cavity narrow bandpass filter utilizing PbS chalcogenide layer material.
机译:本文报道了嵌入多层膜中的真空沉积红外薄膜的首次导出的热光学性质。这些特性是从制造的窄带通滤光片在4-17 µm中红外波长区域的温度相关性中提取的。使用一个航天多腔带通滤波器库,可以确定在20-160ºC的高温范围内PbTe和ZnSe的热光学膨胀系数。嵌入的ZnSe薄膜显示出与所报告的体积值相似的热光学性质,而嵌入的较低光密度的PbTe薄膜则偏离了参考文献资料。对于非制冷红外检测系统中使用的温度不变窄带通滤波器的多层设计,对派生系数的详细了解至关重要。我们进一步介绍了利用PbS硫族化物层材料制造的第一个报告的温度不变的多腔窄带通滤波器。

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