Auxiliary discharge of a wide aperture electron accelerator based on ion-electron emission

A. Grishkov, M. Vorobyov, S. Doroshkevich, V. Shklyaev
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Abstract

In this work, the region of the auxiliary discharge of an electron accelerator based on a non-self-sustained high-voltage glow discharge is investigated. The paper presents the analytical approach and the results of test modeling of a glow discharge, which plays the role of an auxiliary discharge for plasma generation with subsequent extraction of ions from it into the main high-voltage gap. In this glow discharge, the anode is two tungsten wires, and the cathode is the inner walls of the chamber. In the model, these regions are considered as separate independent nodes, which are connected by a layer of conducting plasma that matches the boundary conditions. A model based on the representation of an auxiliary glow discharge in the form of matched electron and ion diodes makes it possible to estimate the range of possible voltages for each of the near-electrode layers and to determine the plasma potential.
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基于离子-电子发射的大孔径电子加速器辅助放电
本文研究了基于非自持高压辉光放电的电子加速器辅助放电区域。本文介绍了辉光放电的分析方法和试验建模结果,辉光放电在等离子体产生过程中起辅助放电的作用,随后将离子提取到主高压间隙中。在这种辉光放电中,阳极是两根钨丝,阴极是腔室的内壁。在模型中,这些区域被认为是独立的节点,它们由一层符合边界条件的导电等离子体连接。基于以匹配的电子和离子二极管形式表示的辅助辉光放电的模型使得估计每个近电极层的可能电压范围和确定等离子体电位成为可能。
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