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Simulation and experimental characterization of the point spread function, pixel saturation, and blooming of a mercury cadmium telluride focal plane array

机译:碲化汞镉焦平面阵列的点扩散函数,像素饱和度和光晕的仿真和实验表征

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A custom IR spot scanning experiment was constructed to project subpixel spots on a mercury cadmium telluride focal plane array (FPA). The hardware consists of an FPA in a liquid nitrogen cooled Dewar, high precision motorized stages, a custom aspheric lens, and a 1.55 and 3.39 μm laser source. By controlling the position and intensity of the spot, characterizations of cross talk, saturation, blooming, and (indirectly) the minority carrier lifetime were performed. In addition, a Monte-Carlo-based charge diffusion model was developed to validate experimental data and make predictions. Results show very good agreement between the model and experimental data. Parameters such as wavelength, reverse bias, and operating temperature were found to have little effect on pixel crosstalk in the absorber layer of the detector. Saturation characterizations show that these FPAs, which do not have antiblooming circuitry, exhibit an increase in cross talk due to blooming at ~39% beyond the flux required for analog saturation.
机译:构造了一个定制的IR点扫描实验,以将亚像素点投射在碲化汞镉焦平面阵列(FPA)上。硬件包括液氮冷却的杜瓦瓶中的FPA,高精度电动平台,定制的非球面透镜以及1.55和3.39μm的激光源。通过控制光点的位置和强度,可以进行串扰,饱和度,光晕和(间接)少数载流子寿命的表征。另外,开发了基于蒙特卡洛的电荷扩散模型以验证实验数据并做出预测。结果表明该模型与实验数据非常吻合。发现波长,反向偏置和工作温度等参数对检测器吸收层中的像素串扰影响很小。饱和特性表明,这些没有抗起霜电路的FPA由于在超出模拟饱和所需通量的〜39%处起霜,因此显示出串扰增加。

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