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Time-dependent kinetic theory of the plasma-wall transition layer in a weakly ionized plasma

机译:弱离子等离子体中等离子体壁过渡层的时间依赖性动力学理论

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摘要

An analytic solution of the time-dependent Boltzmann kinetic equation is found for the first time. The plasma-wall transition (PWT) layer is analyzed using time-dependent velocity distribution functions for electrons and ions. The process of wall charging by electrons is described and estimated. For states close to the time-independent (stationary) state, for which the time dependence of the PWT parameters is weak, (i) the potential shapes in the pre-sheath (PS) and the Debye sheath (DS) are analyzed and (ii) the intermediate region, which bridges the PS and DS sublayers, is defined and its characteristic length is determined. The ion kinetics are dominated by charge exchange with cold neutrals and electron-impact ionization collisions of neutrals. The charge-exchange mean free path lambda(cx) is assumed to be constant and much larger than the electron Debye length lambda(De). The detailed time dependence of the PS sublayer's approach of the stationary state is found. It is proved that the stationary state can be realized only if the floating-potential condition is fulfilled. Published under license by AIP Publishing.
机译:第一次发现时间依赖的Boltzmann动力学方程的分析解决方案。使用用于电子和离子的时间依赖性速度分布函数来分析等离子体壁转换(PWT)层。描述和估计电子壁充电过程。对于接近时间无关(静止)状态的状态,PWT参数的时间依赖性较弱,(i)分析了预护套(PS)和DEYBE护套(DS)中的电位形状和( ii)定义了桥接PS和DS子层的中间区域,并确定其特征长度。离子动力学由带有冷中微子和电子冲击电离碰撞的电荷交换为主。假设电荷交换意味着自由路径Lambda(CX)是恒定的,远大于电子德义长度Lambda(DE)。找到了PS子层的静止状态方法的详细时间依赖性。事实证明,只有在满足浮动势状态时,才能实现静止状态。通过AIP发布根据许可发布。

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  • 来源
    《Mathematical research letters: MRL》 |2020年第2期|共15页
  • 作者单位

    Andronikashvili Inst Phys TSU Tbilisi 0177 Georgia;

    Univ Ljubljana Fac Mech Engn LECAD Lab SI-1000 Ljubljana Slovenia;

    Univ Ljubljana Fac Mech Engn LECAD Lab SI-1000 Ljubljana Slovenia;

    Univ Innsbruck Inst Theoret Phys Plasma &

    Energy Phys Grp A-6020 Innsbruck Austria;

    Univ Innsbruck Inst Theoret Phys Plasma &

    Energy Phys Grp A-6020 Innsbruck Austria;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 数学;
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