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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Bipolar charge transport model with trapping and recombination: an analysis of the current versus applied electric field characteristic in steady state conditions
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Bipolar charge transport model with trapping and recombination: an analysis of the current versus applied electric field characteristic in steady state conditions

机译:具有俘获和复合的双极电荷传输模型:稳态条件下电流与施加电场特性的分析

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摘要

A bipolar model of transport intended to describe the behaviour of polyethylene under dc stress in steady state conditions is presented. The model is based on Poisson's equation and the conservation law of charges, with trapping, detrapping and recombination phenomena being taken into account. Electric field and carrier concentrations are formulated for double-carrier injection and boundary conditions are given by the Schottky injection law. This system of equations with partial differential functions is solved using a finite volume method. The current versus applied electric field characteristic is obtained and analysed for different parameter sets of the model in order to understand their role in the predicted macroscopic behaviour. To do so, we consider two approaches. In a first step, the simulation has been realized with symmetric parameters for positive and negative charge carriers in order to facilitate the interpretation. In a second step, asymmetric parameters have been considered in the model as it constitutes a more realistic situation. Results show that the recombination plays an essential role in order to obtain the two changes in slope, forming a sigmoid-like shape in the current-voltage characteristic as observed experimentally in this kind of material.
机译:提出了一种双极性运输模型,旨在描述聚乙烯在稳态条件下在直流应力下的行为。该模型基于泊松方程和电荷守恒律,并考虑了俘获,去俘获和复合现象。电场和载流子浓度用于双载流子注入,边界条件由肖特基注入定律给出。使用有限体积法求解具有偏微分函数的方程组。获得电流对施加电场的特性,并针对模型的不同参数集进行分析,以了解它们在预测的宏观行为中的作用。为此,我们考虑两种方法。第一步,为了使解释更容易,使用正负电荷载流子的对称参数实现了仿真。第二步,模型中考虑了非对称参数,因为它构成了更为现实的情况。结果表明,为了获得两个斜率变化,重组起着至关重要的作用,在这种材料中实验观察到的电流-电压特性形成了S形。

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