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High-power subnanosecond beams of runaway electrons and volume discharge formation in gases at atmospheric pressure

机译:大气压下失控电子的亚纳秒束和大气中气体的体积放电形成

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摘要

A non-local criterion for runaway electrons generation is proposed, which is a universal two-valued dependence of the critical voltage U-cr on pd for a certain gas (where p is the pressure and d is the interelectrode distance). This dependence subdivides the (U, pd) plane into an area of efficient electron multiplication and an area in which electrons leave the gas gap without multiplication. Electron beams of subnanosecond pulse duration and an amplitude of hundreds of amperes are generated at atmospheric pressure in various gases. A volume nanosecond discharge with a high specific excitation power was realized without the pre-ionization of the discharge gap by using an additional external source. The role of the electron avalanches propagating from the cathode to the anode in a dense gas was considered.
机译:提出了一种用于失控电子生成的非局部准则,该准则是特定气体(其中p是压力,d是电极间距离)的临界电压U-cr对pd的通用二值依赖性。这种依赖性将(U,pd)平面细分为有​​效的电子倍增区域和电子离开气隙而不进行倍增的区域。在大气压下,在各种气体中会产生亚纳秒脉冲持续时间和数百安培振幅的电子束。通过使用额外的外部源,无需提前将放电间隙电离,即可实现具有高比激励功率的体积纳秒放电。考虑了电子雪崩在浓密气体中从阴极传播到阳极的作用。

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