电场对气流中光学击穿的影响

IF 0.4 Q4 MATHEMATICS
V. Zudov, A. Tupikin
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引用次数: 0

摘要

本文获得了气流中电场对光放电等离子体影响的实验数据。考虑了等离子体在光放电作用下的两种外电场结构。为了产生电场,使用了平电极(沿着激光束和气流方向的电场)和环形电极(穿过激光束和气流方向的电场)。发现有两种组合放电模式(光和电)。当电场相对于流轴对称产生时,从喷嘴出口(带正电的电极)到激光束的聚焦点观察到电击穿,而在光放电尾迹中没有观察到飘流。在另一种情况下,在光击穿的同时在平面电极之间实现放电。在大于3kv /cm的恒定强度场中,光放电等离子体的存在促进了介质的电击穿。在这种情况下,电击穿的参数取决于电极的形状、施加电压的极性和空气流速。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of an Electric Field on an Optical Breakdown in the Air Stream
Experimental data on the effect of an electric field on the plasma of an optical discharge in an air flow have been obtained. Two configurations of an external electric field under the action of an optical discharge on the plasma are considered. To create an electric field, flat (the field along the beam and across the flow) and ring electrodes (the field across the laser beam and along the flow) were used. It was found that there are two modes of combined discharge (optical and electrical). When the field was created symmetrically with respect to the flow axis, an electrical breakdown was observed from the nozzle exit (positively charged electrode) to the focusing point of the laser beam, while no streamers were observed in the optical discharge wake. In another case, an electric discharge is realized between flat electrodes simultaneously with optical breakdown. In a field of constant strength above 3 kV/cm, the presence of an optical discharge plasma promoted electrical breakdown of the medium. In this case, the parameters of the electrical breakdown depended on the shape of the electrodes, the polarity of the applied voltage, and the air flow rate.
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来源期刊
CiteScore
0.90
自引率
0.00%
发文量
26
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