The Effect of the Mode of Gas Preionization on the Parameters of Runaway Electrons in High-Pressure Discharges

被引:0
|
作者
V. Yu. Kozhevnikov
A. V. Kozyrev
N. S. Semeniuk
机构
[1] National Research Tomsk State University,
[2] Institute of High Current Electronics of the Siberian Branch of the Russian Academy of Sciences,undefined
来源
Russian Physics Journal | 2017年 / 59卷
关键词
high-pressure gas discharge; runaway electrons; fast electrons in a gas discharge; high-voltage breakdown in gas;
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中图分类号
学科分类号
摘要
The results of theoretical modeling of the process of formation of a nanosecond discharge in a coaxial discharge gap filled with a high-pressure gas are presented. Two cardinally different evolution scenarios of the nanosecond discharge are addressed: A) in a uniformly volume pre-ionized gas medium and B) in a strongly spatially-nonuniform initially-ionized region near the cathode with a small curvature radius. Relying on the minimal mathematical model of a high-voltage discharge and the description of the physical kinetics of runaway electrons, it is shown using the Boltzmann kinetic equation that the amplitude and duration of a current pulse of runaway electrons and their energy spectrum strongly depend on the mode of gas preionization in the gap. In particular, the other conditions being equal, near-cathode initiation gives rise to the generation of a large group of low-energy runaway electrons within the late current-switching stage. The volume-homogeneous gas preionization can reduce the number of fast electrons by nearly two orders of magnitude compared to the regime without preionization.
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页码:1981 / 1988
页数:7
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