Including electron-electron collisions in Monte Carlo simulations of swarms in partially ionized plasmas

Y. Weng, M. Kushner
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引用次数: 2

Abstract

A method is described whereby electron-electron (e-e) collisions can be included in Monte Carlo simulations of electron swarms in low-temperature partially ionized plasmas. The method is based on treating e-e collisions in a manner equivalent to electron-neutral collisions by using the impact approximation (instantaneous momentum exchange). This equivalence permits the direct inclusion of e-e collisions in the selection process used for collisions by the Monte Carlo method and is obtained by having electrons collide with a background electron fluid. Momentum exchange occurs with the fluid, thereby requiring periodic updates of the electron energy distribution function of the background fluid. This method is made computationally feasible by use of a modified null cross section technique. For typical discharge conditions (3 torr N/sub 2/, delta =10/sup -5/, E/N=20*10/sup -17/ V-cm/sup 2/) the method converges in less than tens of nanoseconds, making application to systems operating at greater than or equal to tens of megahertz possible.<>
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包括部分电离等离子体中电子-电子碰撞的蒙特卡罗模拟
本文描述了一种方法,即电子-电子(e-e)碰撞可以包括在低温部分电离等离子体中电子群的蒙特卡罗模拟中。该方法是基于使用冲击近似(瞬时动量交换)以与电子中性碰撞等效的方式处理e-e碰撞。这种等效性允许在蒙特卡罗方法用于碰撞的选择过程中直接包含e-e碰撞,并通过使电子与背景电子流体碰撞而获得。动量交换与流体发生,因此需要定期更新背景流体的电子能量分布函数。采用改进的零截面技术,使该方法在计算上可行。对于典型的放电条件(3 torr N/sub 2/, δ =10/sup -5/, E/N=20*10/sup -17/ V-cm/sup 2/),该方法在不到几十纳秒的时间内收敛,使应用于工作在大于或等于几十兆赫兹的系统成为可能。
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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