首页> 外文会议>Electrical Insulating Materials, 2005. (ISEIM 2005). Proceedings of 2005 International Symposium on >Simulation of bipolar charge transport in polyethylene featuring trapping and hopping conduction through an exponential distribution of traps
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Simulation of bipolar charge transport in polyethylene featuring trapping and hopping conduction through an exponential distribution of traps

机译:通过陷阱的指数分布来模拟具有陷阱和跳跃传导的聚乙烯中双极电荷传输的模拟

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We present an asymmetric bipolar model of conduction intended to describe temporal and spatial evolution of space charge density and external current in cross-linked polyethylene under a uniform applied DC field. Carriers of both polarities are provided by injection at the electrodes according to the Schottky law. Charge transport is described by a hopping mechanism in which carriers move from site to site by getting over a potential barrier. An exponential distribution of trap levels with a maximum limit in trap depth is adopted for the model. Net charge density profiles and external current are obtained by solving the continuity equation for electrons and holes and the Poisson equation for electric field coupled to transport equation. The aim of this work is to use the simulations to evaluate the influence of temperature and applied field on the net charge density profiles.
机译:我们提出了一种非对称的双极性传导模型,旨在描述在均匀施加的DC场下交联聚乙烯中空间电荷密度和外部电流的时空演变。根据肖特基定律,通过在电极上注入来提供两种极性的载流子。电荷传输是通过跳变机制来描述的,在这种跳变机制中,载流子通过克服潜在的障碍而在站点之间移动。该模型采用阱深度最大极限的阱能级指数分布。通过求解电子和空穴的连续性方程以及与传输方程耦合的电场的泊松方程,可以获得净电荷密度分布和外部电流。这项工作的目的是使用仿真来评估温度和施加电场对净电荷密度分布的影响。

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