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首页> 外文期刊>Plasma Sources Science & Technology >Non-equilibrium vibrational and electron energy distributions functions in atmospheric nitrogen ns pulsed discharges and mu s post-discharges: the role of electron molecule vibrational excitation scaling-laws
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Non-equilibrium vibrational and electron energy distributions functions in atmospheric nitrogen ns pulsed discharges and mu s post-discharges: the role of electron molecule vibrational excitation scaling-laws

机译:非平衡振动和电子能量分布在大气氮ns脉冲放电和mu s后放电中的作用:电子分子振动激发定律的作用

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摘要

The formation of the electron energy distribution function in nanosecond atmospheric nitrogen discharges is investigated by means of self-consistent solution of the chemical kinetics and the Boltzmann equation for free electrons. The post-discharge phase is followed to few microseconds. The model is formulated in order to investigate the role of the cross section set, focusing on the vibrational-excitation by electron-impact through resonant channel. Four different cross section sets are considered, one based on internally consistent vibrational-excitation calculations which extend to the whole vibrational ladder, and the others obtained by applying commonly used scaling-laws.
机译:通过化学动力学的自洽解和自由电子的玻耳兹曼方程,研究了纳秒级大气氮放电中电子能量分布函数的形成。放电后阶段持续几微秒。建立该模型是为了研究横截面集的作用,重点是通过共振通道通过电子撞击产生的振动激励。考虑了四种不同的横截面集,一种基于内部一致的振动激励计算,该计算扩展到整个振动阶梯,而另一种则通过应用常用的缩放定律获得。

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