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Theory and Modelling of High-Field Carrier Transport in High-Speed Photodetectors

机译:高速光电探测器高场载流子的理论与建模

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We present analytical microscopic theory and numerical simulation of high-field hot-electron effects in high-speed p-i-n and uni-travelling carrier (UTC) photodetectors (PDs), using both the drift-diffusion (DD) and hydrodynamic (HD) models for steady-state and transient regimes. It is shown that the current models of drift mobility in DD transport are not applicable for strongly inhomogeneous systems with built-in fields. A new DD mobility model is suggested. Comparative analysis of DD and HD modeling results is carried out and it is shown that the HD model adequately describes operation of high-speed PDs excited by short sub-picosecond optical pulses.
机译:我们使用漂移扩散(DD)和流体动力学(HD)模型,在高速引脚和UTC)光电探测器(PDS)中的高场热电子效应的分析微观理论和数值模拟。稳态和瞬态制度。结果表明,DD运输中的漂移流动模型不适用于内置领域的强不均匀的系统。建议新的DD移动性模型。对DD和HD建模结果进行比较分析,并显示HD模型充分描述了通过短子微微秒光脉冲激发的高速PD的操作。

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