Comparison of different carrier transport models for simulations of W-and D-band GaAs IMPATT diodes

M. Curow, D. Liebig, K. Schunemann
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引用次数: 1

Abstract

This contribution presents a comparison of different carrier transport models for design and optimization of GaAs IMPATT diodes for W- and D-band applications. The drift-diffusion equations, an hydrodynamic transport model, a Monte-Carlo simulator and a Cellular-Automata code are considered. It is shown that the drift-diffusion equations cannot predict realistic output powers and dynamic impedances if doping profiles of the Read-type are examined. Secondly, the hydrodynamic transport model can closely reproduce the results of particle simulators if additional, slightly modified energy balance equations are solved in order to determine the ionization rates which higher accuracy compared to the standard model.
不同载流子输运模型在w和d波段GaAs IMPATT二极管模拟中的比较
本文介绍了用于W波段和d波段应用的GaAs IMPATT二极管设计和优化的不同载流子输运模型的比较。考虑了漂移扩散方程、流体动力输运模型、蒙特卡罗模拟器和元胞自动机代码。结果表明,对于read型掺杂谱,漂移扩散方程不能预测实际的输出功率和动态阻抗。其次,流体动力输运模型能较好地再现粒子模拟器的结果,但需要对能量平衡方程进行额外的修正,以确定电离速率,与标准模型相比精度更高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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