微波场中惰性气体和分子气体的击穿和放电传播

N. Babaeva, A. Mnatsakanyan, G. Naidis
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引用次数: 0

摘要

在低于气体击穿阈值的场强下产生的微波放电倾向于向电磁辐射源传播。综述了现有的实验数据和放电传播模型。讨论了在不同实验条件下不同传播机制的作用。给出了惰性气体和分子气体中放电传播的数值模拟结果。该模型为描述非平衡受激微波放电在惰性气体和分子气体中的平面前传播提供了一种方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Breakdown and discharge propagation in microwave fields in inert and molecular gases
Microwave discharges initiated at field intensities lower than threshold value for gas breakdown tend to propagate towards the source of electromagnetic radiation. The authors review the existing experimental data and the models of discharge propagation. The role of different mechanisms of propagation in various experimental conditions is discussed. Results of numerical modeling of discharge propagation in inert and molecular gases are presented. The model presented gives an approach to the description of the plane front propagation of nonequilibrium stimulated microwave discharge in inert and molecular gases.<>
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