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首页> 外文期刊>Journal of Plasma Physics >Non-thermal renormalization shielding on the electron-atom collision in partially ionized generalized Lorentzian non-thermal plasmas
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Non-thermal renormalization shielding on the electron-atom collision in partially ionized generalized Lorentzian non-thermal plasmas

机译:部分电离广义洛伦兹非热等离子体中电子-原子碰撞的非热重正化屏蔽

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摘要

The non-thermal renormalization shielding effects on the elastic electron-atom collision process are investigated in partially ionized generalized Lorentzian non-thermal plasmas. The eikonal analysis for the Hamilton-Jacobi solution and impact parameter method are employed to obtain the eikonal scattering phase shift and eikonal cross section as functions of the collision energy, Debye length, impact parameter, and spectral index of the Lorentzian plasma. It is found that the non-thermal renormalization shielding effect enhances the eikonal scattering phase shift as well as the eikonal collision cross section, especially for small impact parameter domains. It is also found that the non-thermal renormalization shielding effect on the eikonal scattering phase shift decreases with an increase of the impact parameter. In addition, it is found that the maximum position of the eikonal collision cross section has receded from the collision center with an increase of the non-thermal character of the plasma.
机译:在部分电离的广义洛伦兹非热等离子体中研究了非热重归一化屏蔽对弹性电子-原子碰撞过程的影响。采用汉密尔顿-雅各比解的特征值分析和冲击参数方法,获得了特征能量散射相移和特征截面,这些特征是碰撞能量,德拜长度,冲击参数和洛伦兹等离子体的光谱指数的函数。发现非热重归一化屏蔽效应增强了本征散射相移以及本征碰撞截面,特别是对于较小的冲击参数域。还发现,随着冲击参数的增加,非热重归一化屏蔽对本征散射相移的影响减小。另外,发现随着等离子体的非热特性的增加,真实的碰撞横截面的最大位置已经从碰撞中心退回。

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