The kinetic theory of cathode plasma expansion in a spatially non-uniform geometric configuration of a vacuum diode

J. Yao, Vasily Yurievich Kozhevnikov, Vladislav Igumnov, Zijia Chu, C. Yuan, Zhongxian Zhou
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Abstract

This paper presents a theoretical explanation for the occurrence of anomalous ion acceleration in vacuum diodes, leading to the expansion of cathode plasma towards the anode, a characteristic phenomenon of vacuum breakdown. The explanation is derived from first principles based on equations of collisionless physical kinetics, using the example of an axisymmetric vacuum diode. The proposed theoretical interpretation convincingly demonstrates that the primary mechanism behind the anomalous ion acceleration of cathode plasma is the collisionless motion of ions in a self-consistent electric field.
真空二极管空间非均匀几何配置中阴极等离子体膨胀的动力学理论
本文从理论上解释了真空二极管中出现异常离子加速现象,导致阴极等离子体向阳极膨胀,这是真空击穿的一个特征现象。该解释是以轴对称真空二极管为例,根据无碰撞物理动力学方程从第一原理推导出来的。所提出的理论解释令人信服地证明,阴极等离子体异常离子加速背后的主要机制是离子在自洽电场中的无碰撞运动。
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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