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Transverse magnetic field effects on the high-voltage pulsed discharge plasma in helium
Journal of Plasma Physics ( IF 2.5 ) Pub Date : 2024-02-21 , DOI: 10.1017/s0022377824000138
C. Chen , K. M. Rabadanov , N. A. Ashurbekov , C. Yuan , A. M. Shakhrudinov

This study investigates the effect of a transverse magnetic field on high-voltage pulsed discharge in helium at a pressure of 30 Torr. A simple two-dimensional fluid model that describes the high-voltage pulsed discharge in helium in a transverse weak magnetic field (B = 0.4 T) is presented, which uses an empirical relation to account for the magnetic field. The results of using the empirical relation for the effective field agree well with the experimental results. The dynamics of discharge development in the presence of the magnetic field is also investigated. The magnetic field does not significantly affect the gas-discharge development dynamics in helium at a pressure of 30 Torr.

中文翻译:

横向磁场对氦高压脉冲放电等离子体的影响

本研究研究了横向磁场对 30 Torr 压力下氦气中高压脉冲放电的影响。一个简单的二维流体模型,描述横向弱磁场中氦气中的高压脉冲放电(= 0.4 T),它使用经验关系来解释磁场。使用有效场经验关系的结果与实验结果非常吻合。还研究了磁场存在下放电发展的动力学。在 30 Torr 压力下,磁场不会显着影响氦气中的气体放电发展动力学。
更新日期:2024-02-21
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