...
首页> 外文期刊>Plasma physics reports >Effect of Atoms Evaporated from the Anode on the Structure of the Vacuum Arc Space Charge Sheath
【24h】

Effect of Atoms Evaporated from the Anode on the Structure of the Vacuum Arc Space Charge Sheath

机译:阳极蒸发原子对真空电弧空间电荷鞘结构的影响

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The structure of the anode space charge sheath of a vacuum arc is studied with allowance for the dependence of the negative anode fall on the ratio of the directed electron velocity v0 to the electron thermal velocity vT for different values of the flux density of atoms evaporated from the anode. Poisson’s equation for the sheath potential is solved taking into account the electron space charge, fast cathode ions, and slow ions produced due to the ionization of atoms evaporated from the anode. The kinetic equation for atoms and slow anode ions is solved with allowance for ionization in the collision integral. Analytic solutions for the velocity distribution functions of atoms and slow ions and the density of slow ions are obtained. It is shown that the flux of slow ions substantially affects the spatial distribution of the electric field E(z) in the sheath. As the flux density increases, the nonmonotonic dependence E(z) transforms into a monotonic one and the sheath narrows. For a given flux of evaporated atoms Πa, the increase in the ratio of the directed electron velocity to the electron thermal velocity leads again to a nonmonotonic dependence E(z). As z increases, the electric field first increases, passes through the maximum, decreases, passes through the minimum Emin, and then again increases toward the anode. There is a limiting value of the ratio (v_0/v_T)~* at which E_(min)(z) vanishes. At v_0/v_T>(v_0/v_T)~*, the condition for the existence of a steady-state sheath is violated and the profiles of the field and potential in the sheath become oscillating. The dependence of (v_0/v_T)~* on the flux density of evaporated atoms Π_a is obtained. It is shown that the domain of existence of steady-state solutions in the sheath broadens with increasing Π_a.
机译:研究了真空电弧阳极空间电荷鞘的结构,考虑到负阳极下降对从中蒸发的原子的不同通量密度值的定向电子速度v0与电子热速度vT之比的依赖性。阳极。考虑到电子空间电荷,快速的阴极离子和由于从阳极蒸发的原子的电离而产生的慢速离子,可以求解鞘层电势的泊松方程。求解原子和慢阳极离子的动力学方程,并考虑到碰撞积分中的电离。得到了原子和慢离子的速度分布函数以及慢离子的密度的解析解。结果表明,慢离子通量实质上影响护套中电场E(z)的空间分布。随着通量密度的增加,非单调依赖性E(z)转换为单调依赖性,并且护套变窄。对于给定的蒸发原子通量Πa,定向电子速度与电子热速度之比的增加再次导致非单调依赖性E(z)。随着z的增加,电场首先增加,通过最大值,然后减小,通过最小值Emin,然后再次向阳极增加。 E_(min)(z)​​消失时,存在一个比率(v_0 / v_T)〜*的极限值。在v_0 / v_T>(v_0 / v_T)〜*时,存在稳态鞘层的条件被破坏,鞘层中的电场和电势轮廓开始振荡。得到(v_0 / v_T)〜*与蒸发原子__a的通量密度的相关性。结果表明,鞘内稳态解的存在域随着Π_a的增加而变宽。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号