利用 E-FISH 诊断技术对纯氨气中的辉光模式脉冲介质阻挡放电进行时间分辨研究

R Jean-Marie-Desiree, A Najah, C Noël, L De Poucques, S Cuynet
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摘要

在氨气环境中,利用电场诱导二次谐波(E-FISH)诊断法,对脉冲介质阻挡放电的纳秒辉光放电进行了时间分辨电场强度测量。时间分辨率为 2 毫微秒,空间分辨率估计为 70 微米(根据激光腰长计算)。对在 4 kHz 频率下进行和不进行等离子体放电的 E-FISH 测量进行比较研究后发现,存在持续的反电场,假定该电场是由所使用的 AlN 介电体之间的电荷积累造成的。此外,通过研究施加电压、压力和电介质间距离的影响,测量结果似乎表明,从上一次放电到下一次放电的放电后体积中也存在电荷残留。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Time-resolved investigations of a glow mode impulse dielectric barrier discharge in pure ammonia gas by means of E-FISH diagnostic
Time-resolved electric field strength measurements have been performed, using an electric-field induced second harmonic (E-FISH) diagnostic, in a nanosecond glow discharge of an impulse dielectric barrier discharge, in an ammonia gas environment. A temporal resolution of 2 ns and a spatial resolution estimated at 70 µm (given by laser waist) have been achieved. The comparative study of E-FISH measurements with and without a plasma discharge, operated at 4 kHz, reveal the presence of a persistent counter electric field, which is assumed to be caused by charge accumulation in between the AlN dielectrics used. Furthermore, by studying the influence of the applied voltage, the pressure, and the inter-dielectric distance, measurements seem to indicate the presence of charges remaining also in the post-discharge volume from the previous discharge to the next one.
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