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Challenges in multiphysics modeling of dual-band HgCdTe infrared detectors

机译:双频HGCDTE红外探测器多族型建模挑战

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摘要

We present three-dimensional simulations of HgCdTe-based focal plane arrays (FPAs) with two-color and dual-band sequential infrared pixels having realistic truncated-pyramid shape, taking into account also the presence of compositionally graded transition layers. After a validation against the spectral responsivity of two-color, mid-wavelength infrared detectors from the literature, the method is employed fora simulation campaign on dual-band, mid-, and long-wavelength infrared FPAs illuminated by a Gaussian beam. Simulation results underscore the importance of a full-wave approach to the electromagnetic problem, since multiple internal reflections due to metallizations and slanted sidewalls produce non-negligible features in the quantum efficiency spectra, especially in the long-wavelength band. Evaluations of the optical and diffusive contribution to inter-pixel crosstalk indicate the effectiveness of deep trenches to prevent diffusive crosstalk in both wavebands. In its present form, the detector seems to be subject to significant optical crosstalk in the long-wavelength infrared band, which could be addressed through pixel shape optimization. (C) 2020 Optical Society of America
机译:我们用具有真实截短的金字塔形状的双色和双频序列红外像素的三维模拟,具有逼真的截短金字塔形状,考虑到组成渐变的转变层的存在。在验证对来自文献的双色波长红外探测器的双色波长红外探测器的频谱响应度之后,该方法采用由高斯光束照射的双频带,中频和长波长红外FPA上的仿真运动。仿真结果强调了全波方法对电磁问题的重要性,因为由于金属化和倾斜的侧壁引起的多个内反射产生量子效率光谱中的不可忽略的特征,尤其是在长波长带中。对像素间串扰的光学和扩散贡献的评估表明了深沟的有效性,以防止两个波段中的扩散串扰。在其目前的形式中,检测器似乎受到长波长红外频带中的显着光学串扰,其可以通过像素形状优化来解决。 (c)2020美国光学学会

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    《Applied optics》 |2020年第19期|共8页
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