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Gas-discharge gap passage by injected high-energy electrons driven by a high-voltage pulse

机译:高压脉冲驱动下注入的高能电子通过气体放电间隙

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摘要

The motion of high-energy electrons in a gas-discharge gap filled by nitrogen at atmospheric pressure has been simulated. Electrons were driven by a subnanosecond high-voltage pulse with an amplitude of 150 kV. It is established that the injected electrons can reach the anode only for a very high initial energy, which cannot be provided by means of explosive emission. Therefore, under usual experimental conditions, electron emission from the cathode cannot account for the main fraction of electrons generated in a gas-filled diode at atmospheric pressure.
机译:模拟了高能电子在大气压下由氮气填充的气体放电间隙中的运动。电子由振幅为150 kV的亚纳秒高压脉冲驱动。可以确定的是,注入的电子只能以非常高的初始能量到达阳极,而这不能通过爆炸发射来提供。因此,在通常的实验条件下,从阴极发射的电子不能解释在大气压力下充气二极管中产生的电子的主要部分。

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