Sheath and Presheath in a Collisionless Open Field Plasma

Kunihiro Sato, F. Miyawaki, W. Fukui
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引用次数: 34

Abstract

The plasma–sheath equation for a collisionless plasma with a finite‐temperature particle source in a nonuniform open magnetic field is formulated. The plasma equation is solved analytically and the plasma–sheath equation is also solved numerically for various profiles of the magnetic field. The potential formed in the plasma depends considerably on the profile of the magnetic field strength; the potential drop in the presheath increases and the ion distribution function widens as the magnetic field strength decreases in the direction of the plasma flow. Application of the generalized Bohm criterion shows that the solution of the plasma equation always satisfies this criterion when the magnetic field monotonically decreases in the outside direction. The potential drop in the sheath is almost independent of the magnetic field profile, and the ion energy at a wall for a decreasing magnetic field is slightly large when compared with that for a uniform magnetic field.
无碰撞开放场等离子体中的鞘层和前鞘层
建立了非均匀开放磁场中具有有限温度粒子源的无碰撞等离子体的等离子体鞘层方程。对不同磁场剖面的等离子体方程进行了解析求解,并对等离子体鞘层方程进行了数值求解。在等离子体中形成的电势在很大程度上取决于磁场强度的分布;在等离子体流动方向上,随着磁场强度的减小,预鞘层电位下降增大,离子分布函数变宽。应用广义Bohm判据表明,当磁场向外单调减小时,等离子体方程的解总是满足该判据。鞘层电位下降几乎与磁场分布无关,与均匀磁场相比,磁场减弱时壁处的离子能量略大。
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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