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Effect of Accelerated Electrons on the Glow Structure of Nanosecond Diffuse Discharge in the Rod-Plane Air Gap

机译:加速电子对杆面空气间隙中纳秒漫射放电辉光结构的影响

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摘要

A diffuse discharge in a rod (cathode)-plane gap with an interelectrode spacing of 10 cm is studied in air at atmospheric pressure. The cathode voltage is 370-390 kV at a pulse FWHM of about 70 ns. It is shown that a pulse-to-pulse variation in delay time of the discharge formation in an interval of 3-15 ns leads to variations in the discharge current and X-ray pulse amplitude in intervals of 100-200 A and 20-250 relative units, respectively. A relationship of the amplitude of the X-ray pulse and structural parameters of the discharge glow is obtained. It is shown that fast electrons with energies of less 30 keV that are accelerated by strong electric field in the vicinity of the cathode play the key role in the formation of the longitudinal structure of glow at relatively large delay times of the discharge formation. Fast electrons ionize peripheral regions of the discharge, increase its cross section, and, hence, provide a decrease in the current density, specific energy deposition, and radiation intensity at a distance from the cathode that corresponds to electron path in air.
机译:在大气压下在空气中研究杆(阴极)-Plane间隙中的散射放电(阴极)平面间隙,在气压下。阴极电压在约70ns的脉冲FWHM处为370-390kV。结果表明,在3-15ns的间隔的间隔中放电形成的延迟时间脉冲到脉冲变化导致放电电流和X射线脉冲幅度的变化,间隔为100-200a和20-250相对单位分别。获得了X射线脉冲的幅度和放电辉光的结构参数的关系。结果表明,具有较少30keV的快速电子,其在阴极附近的强电场加速,在放电形成的相对大的延迟时间中形成纵向结构的纵向结构中的关键作用。快速电子电离的放电外围区域,增加其横截面,因此,在距离空气中对应于电子路径的阴极的距离处的电流密度,特定能量沉积和辐射强度的降低。

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  • 来源
    《Technical physics》 |2020年第2期|共8页
  • 作者单位

    All Russia Sci Res Inst Expt Phys Russian Fed Nucl Ctr Sarov 607188 Nizhny Novgorod Russia;

    All Russia Sci Res Inst Expt Phys Russian Fed Nucl Ctr Sarov 607188 Nizhny Novgorod Russia;

    Natl Res Nucl Univ MEPhI Sarov Physicotech Inst Moscow Engn Phys Inst Sarov 607186 Nizhny Novgorod Russia;

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  • 正文语种 eng
  • 中图分类 Tb13;
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