液相氙中负流光的电子输运和传播

S. Dujko, I. Simonović, D. Bošnjaković, Z. Petrović, R. White
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引用次数: 0

摘要

蒙特卡罗方法最初是为中性稀释气体中的带电粒子群而发展起来的,通过考虑相干和其他液体散射效应,扩展和推广到研究液相惰性气体中电子的输运过程。计算了液相氙中电子输运系数,包括电子迁移率、扩散系数和电离系数,作为还原电场的函数。然后将计算的输运系数作为经典流体模型的输入来研究负拖缆的动力学。使用当代等离子体放电动力学理论的语言,在本工作的许多重点中,我们研究了非弹性散射事件中非弹性能量损失的各种表示如何影响电子输运和宏观流光性质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electron transport and propagation of negative streamers in liquid-phase xenon
The Monte Carlo method, initially developed for charged particle swarms in neutral dilute gases, is extended and generalized to investigate the transport processes of electrons in liquid-phase noble gases by accounting for the coherent and other liquid scattering effects. Electron transport coefficients, including the electron mobility, diffusion coefficients and ionization coefficient, are calculated as a function of the reduced electric field in liquid-phase xenon. Calculated transport coefficients are then used as an input in the classical fluid model to investigate the dynamics of negative streamers. Using the language of the contemporary kinetic theory of plasma discharges, in the present work among many important points, we investigate how various representations of inelastic energy losses in inelastic scattering events affect the electron transport and the macroscopic streamer properties.
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