Generation of supershort avalanche electron beams and formation of diffuse discharges in different gases at high pressure

V. Tarasenko, E. Baksht, A. G. Burachenko, I. Kostyrya, M. Lomaev, D. Rybka
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引用次数: 122

Abstract

This paper presents the results of experimental investigations on the generation of supershort avalanche electron beams (SAEB) at nanosecond discharges initiated in gas-filled diodes. In air, at a pressure of 1 atm with a sharply non-uniform electric field, an SAEB is generated from the inter-electrode gap at a solid angle exceeding 2π sr. Reduction of gap d between the cathode and the anode leads to a decrease in the current amplitude of the beam incident on the lateral walls of the gas-filled diode and in an increase in the pulse duration of the beam current both in the axial and radial directions. Pulses of the beam current initiated on the lateral surface of a tube cathode have been recorded. It is shown that to generate electrons with an ‘anomalous’ energy, cathodes with an increased radius of curvature should be used.
超短雪崩电子束的产生和不同气体高压下漫射放电的形成
本文介绍了在充气二极管中纳秒放电产生超短雪崩电子束(SAEB)的实验研究结果。在空气中,在压力为1atm且电场极不均匀的情况下,电极间隙以超过2π sr的立体角产生SAEB。阴极和阳极间隙d的减小导致入射到充气二极管侧壁上的光束电流幅值减小,光束电流在轴向和径向上的脉冲持续时间增加。已经记录了在阴极管侧面表面产生的光束电流脉冲。结果表明,要产生具有“异常”能量的电子,应使用曲率半径增加的阴极。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Plasma Devices and Operations
Plasma Devices and Operations 物理-核科学技术
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