Flux and reactive contributions to electron transport in methane.

K. Ness, A. M. Nolan
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引用次数: 5

Abstract

A previously developed theoretical analysis (Nolan et al. 1997) is applied to the study of electron transport in methane for reduced electricfields in the range 1 to 1000 Td. The technique of analysis identifies the flux and reactive components of the measurable transport, without resort to the two-term approximation. A comparison of the results of the Monte Carlo method with those of a multiterm Boltzmann equation analysis (Ness and Robson 1986) shows good agreement. The sensitivity of the modelled electron transport to post-ionisation energy partitioning is studied by comparison of three ionisation energy partitioning regimes at moderate (300 Td) and high (1000 Td) values of the reduced electricfield.
通量和反应对甲烷中电子传递的贡献。
先前开发的理论分析(Nolan et al. 1997)应用于1至1000 Td范围内的还原电场在甲烷中的电子传输研究。分析技术可以识别可测量输运的通量和反应成分,而不需要求助于两项近似。蒙特卡罗方法的结果与多项玻尔兹曼方程分析的结果(Ness和Robson 1986)的比较显示出很好的一致性。通过比较中等(300 Td)和高(1000 Td)电场值下的三种电离能分配机制,研究了模拟电子输运对后电离能分配的敏感性。
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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