减节距碲化汞红外探测器阵列的大规模数值模拟

B. Pinkie, E. Bellotti
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引用次数: 4

摘要

数值模拟在大型红外探测器阵列技术的发展中起着重要的作用,特别是当考虑到其尺寸与其所探测的辐射波长相当的设备时。计算模型可以用来预测这些器件的光学和电学响应,并在制造之前评估设计。我们已经开发了一个模拟框架,它解决了麦克斯韦方程组来确定探测器的电磁特性,随后使用漂移扩散方法来评估电响应。我们应用这些技术来测量阴极放置对组成渐变和恒定Hg1−xCdxTe中波长红外探测器的像素间和像素内属性的影响。特别地,量子效率、最近邻串扰和调制传递函数在几种器件架构下进行了评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Large-scale numerical simulation of reduced-pitch HgCdTe infrared detector arrays
Numerical simulations play an important role in the development of large-format infrared detector array tech- nologies, especially when considering devices whose sizes are comparable to the wavelength of the radiation they are detecting. Computational models can be used to predict the optical and electrical response of such devices and evaluate designs prior to fabrication. We have developed a simulation framework which solves Maxwell’s equations to determine the electromagnetic properties of a detector and subsequently uses a drift-diffusion ap- proach to asses the electrical response. We apply these techniques to gauge the effects of cathode placement on the inter- and intra-pixel attributes of compositionally graded and constant Hg1−xCdxTe mid-wavelength infrared detectors. In particular, the quantum efficiency, nearest-neighbor crosstalk, and modulation transfer function are evaluated for several device architectures.
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