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Design and Development of High Performance Radiation Hardened Anti-Reflection Coatings for LWIR HgCdTe Focal Plane Arrays

机译:LWIR HgCdTe焦平面阵列的高性能辐射硬化抗反射涂层的设计与开发

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High Performance LWIR Focal Plane Arrays are critical for many space applications. Reliable LWIR focal plane arrays are needed for these applications that can operate in space environment without any degradation. In this paper, we present various LWIR detector array architectures currently being evaluated for LWIR applications. These include backside-illuminated configurations for HgCdTe fabricated on CdZnTe and Silicon substrates. To optimize the LWIR device performance, minimize the anti-reflection losses, and significant reduction in the effects of solarization in space, innovative Anti-reflection coatings are needed, that will enhance the performance of the LWIR detector / focal plane arrays. We also present AR Coating models and experimental results on several promising multilayer AR coatings that includes CdTe, Si_3N_4 and diamond like Carbon, that have the necessary spectral response in the 8-14 microns and are hard materials with excellent bond strength. A combination of these materials offers the potential of developing anti-reflection coatings with high optical quality with controlled physical properties.
机译:高性能LWIR焦平面阵列对许多空间应用至关重要。这些应用需要可靠的LWIR焦平面阵列,这些阵列可以在空间环境中运行而不会降低性能。在本文中,我们介绍了目前正在为LWIR应用进行评估的各种LWIR检测器阵列架构。这些包括在CdZnTe和硅基板上制造的HgCdTe的背面照明配置。为了优化LWIR器件的性能,最大程度地减少减反射损耗,并显着减少太空中日光化的影响,需要创新的减反射涂层,这将增强LWIR检测器/焦平面阵列的性能。我们还介绍了几种有前途的多层AR涂层的增透膜模型和实验结果,包括CdTe,Si_3N_4和类金刚石碳,它们在8-14微米范围内具有必要的光谱响应,并且是具有出色结合强度的硬质材料。这些材料的组合提供了开发具有高光学质量和可控物理性能的减反射涂层的潜力。

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