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Streamers at the Subnanosecond Breakdown of Argon and Nitrogen in Nonuniform Electric Field at Both Polarities

机译:在两种极性的非均匀电场中氩气和氮气细分的飘带

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An ICCD camera was used to study plasma glow at the stage of the streamer (ionization wave) formation in the tip–plane gap with a length of 3 mm filled with argon or nitrogen at a pressure of 12.5–400 kPa. Positive and negative nanosecond voltage pulses were applied across the gap. Images of streamer were obtained at different time at its propagation along the gap. A streak-camera equipped with a spectrometer was used to measure time evolution of the radiation intensity of nitrogen molecules at a wavelength of 337.1 nm in several regions along the gap at the negative polarity. Average streamer velocity (1.8 cm/ns) was estimated from experimental data at atmospheric pressure of nitrogen. Amplitude–time characteristics of voltage, discharge current and the current of runaway electron beam behind the aluminum-foil anode with a thickness of 10 μm were measured. Reasons for a diffuse discharge under the given experimental conditions were discussed.
机译:使用ICCD相机在尖端面间隙中研究炉子(电离波)的阶段的等离子体发光,其长度为3mm,在12.5-400kPa的压力下填充有氩气或氮。 施加正纳秒和负纳秒电压脉冲。 在沿着间隙传播的不同时间获得飘带的图像。 配备有光谱仪的条纹相机用于测量沿着负极间隙的几个区域的波长为337.1nm的波长下氮素分子的辐射强度的时间演变。 在氮气大气压下的实验数据估计平均流速速度(1.8cm / ns)。 测量厚度为10μm的铝箔阳极后面的电压,放电电流和失控电子束电流的幅度时间特性。 讨论了在给定的实验条件下漫射放电的原因。

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  • 来源
    《Technical physics 》 |2018年第6期| 共8页
  • 作者单位

    Institute of High Current Electronics Siberian Branch Russian Academy of Sciences;

    Institute of High Current Electronics Siberian Branch Russian Academy of Sciences;

    Institute of High Current Electronics Siberian Branch Russian Academy of Sciences;

    Institute of High Current Electronics Siberian Branch Russian Academy of Sciences;

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  • 正文语种 eng
  • 中图分类 Tb13;
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