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摘要:
The fluid model is proposed to investigate the gas breakdown driven by the short-pulse (such as Gaussian pulse) high-power microwave at high pressures. However, the fluid model requires specification of the electron energy distribution function (EEDF);the common assumption of a Maxwellian EEDF can result in the inaccurate breakdown prediction when the electrons are not in equilibrium. We confirm that the influence of the incident pulse shape on the EEDF is tiny at high pressures by using the particle-in-cell Monte Carlo collision (PIC-MCC) model. As a result, the EEDF for a rectangular microwave pulse directly derived from the Boltzmann equation solver Bolsig+, is introduced into the fluid model for predicting the breakdown threshold of the non-rectangular pulse over a wide range of pressures, and the obtained results are very well matched with those of the PIC-MCC simulations. The time evolution of a non-rectangular pulse breakdown in gas, obtained by the fluid model with the EEDF from Bolsig+, is presented and analyzed at different pressures. In addition, the effect of the incident pulse shape on the gas breakdown is discussed.
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篇名 Short-pulse high-power microwave breakdown at high pressures
来源期刊 中国物理B(英文版) 学科
关键词 fluid model electron energy distribution function gas breakdown short-pulse high-power mi-crowave
年,卷(期) 2015,(2) 所属期刊栏目
研究方向 页码范围 025101-1-025101-5
页数 1页 分类号
字数 语种 英文
DOI 10.1088/1674-1056/24/2/025101
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fluid model
electron energy distribution function
gas breakdown
short-pulse high-power mi-crowave
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中国物理B(英文版)
月刊
1674-1056
11-5639/O4
北京市中关村中国科学院物理研究所内
eng
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17050
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