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Computer Modelling of Non-Equilibrium Multiple-Trapping and Hopping Transport in Amorphous Semiconductors

机译:非均衡多捕获和非晶半导体跳跃运输的计算机建模

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摘要

In this paper we demonstrate a simple computational procedure for the simulation of transport in a disordered semiconductor in which both multi-trapping and hopping processes are occurring simultaneously. We base the simulation on earlier work on hopping transport, which used a Monte-Carlo method. Using the same model concepts, we now employ a stochastic matrix approach to speed computation, and include also multi-trapping transitions between localised and extended states. We use the simulation to study the relative contributions of extended state conduction (with multi-trapping) and hopping conduction (via localised states) to transient photocurrents, for various distributions of localised gap states, and as a function of temperature. The implications of our findings for the interpretation of transient photocurrents are examined.
机译:在本文中,我们展示了一种简单的计算过程,用于在混乱的半导体中模拟传输,其中同时发生多捕获和跳跃过程。我们基于跳跃运输上的早期工作的模拟,它使用了Monte-Carlo方法。使用相同的型号概念,我们现在采用随机矩阵方法来速度计算,并且还包括本地化和扩展状态之间的多捕获转换。我们使用模拟来研究扩展状态传导(具有多捕获)和跳跃导通(通过局部状态)到瞬态光电流的相对贡献,用于各种局部间隙状态和温度的函数。检查了我们对瞬时光电流解释的调查的影响。

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