<p>A&#xa0;theoretical study of the electrical breakdown pattern of a&#xa0;gas-discharge gap under a&#xa0;large (10-fold) gas pressure difference is presented. This discharge simulates the luminous structures in the Earth’s upper atmosphere, such as <i>red sprites</i>. The main differences between a&#xa0;discharge under the pressure gradient conditions and a&#xa0;discharge in a&#xa0;homogeneous gas medium are identified. It is shown that the spatial transition of the discharge from a&#xa0;diffuse column to a&#xa0;branching streamer is caused by a&#xa0;localized pressure decrease and an excessively reduced electric field strength above a&#xa0;threshold value, approximately equal to the static breakdown strength.</p>

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Propagation of streamer channel in gap with large gas pressure difference

  • N. S. Semeniuk,
  • A. V. Kozyrev,
  • V. Yu. Kozhevnikov

摘要

A theoretical study of the electrical breakdown pattern of a gas-discharge gap under a large (10-fold) gas pressure difference is presented. This discharge simulates the luminous structures in the Earth’s upper atmosphere, such as red sprites. The main differences between a discharge under the pressure gradient conditions and a discharge in a homogeneous gas medium are identified. It is shown that the spatial transition of the discharge from a diffuse column to a branching streamer is caused by a localized pressure decrease and an excessively reduced electric field strength above a threshold value, approximately equal to the static breakdown strength.