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首页> 外文期刊>Laser and Particle Beams >X-ray radiation and runaway electron beams generated during discharges in atmospheric-pressure air at rise times of voltage pulse of 500 and 50 ns
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X-ray radiation and runaway electron beams generated during discharges in atmospheric-pressure air at rise times of voltage pulse of 500 and 50 ns

机译:在大气压空气中产生的X射线辐射和失控电子束在500和50 ns的电压脉冲的上升时间下的升高时间

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摘要

The parameters of X-ray radiation and runaway electron beams (RAEBs) generated at long-pulse discharges in atmospheric-pressure air were investigated. In the experiments, high-voltage pulses with the rise times of 500 and 50 ns were applied to an interelectrode gap. The gap geometry provided non-uniform distribution of the electric field strength. It was founded that at the voltage pulse rise time of 500 ns and the maximum breakdown voltage Um for 1 cm-length gap, a duration [full width at half maximum (FWHM)] of a RAEB current pulse shrinks to 0.1 ns. A decrease in the breakdown voltage under conditions of a diffuse discharge leads to an increase in the FWHM duration of the electron beam current pulse up to several nanoseconds. It was shown that when the rise time of the voltage pulse is of 500 ns and the diffuse discharge occurs in the gap, the FWHM duration of the X-ray radiation pulse can reach ≈100 ns. It was established that at a pulse-periodic diffuse discharge fed by high-voltage pulses with the rise time of 50 ns, an energy of X-ray quanta and their number increase with increasing breakdown voltage. Wherein the parameter Um/pd is saved.
机译:研究了在大气压空气中长脉冲放电产生的X射线辐射和失控电子束(RAEB)的参数。在实验中,施加具有500和50ns的上升时间的高压脉冲被施加到电极间隙中。间隙几何形状提供了电场强度的不均匀分布。结果,成立,在500ns的电压脉冲上升时间和最大击穿电压UM的1cm长间隙中,RAEB电流脉冲的持续时间[半最大(FWHM)的全宽度]收缩至0.1ns。漫射放电条件下的击穿电压的减小导致电子束电流脉冲的FWHM持续时间增加到几个纳秒。结果表明,当电压脉冲的上升时间为500ns并且在间隙中发生漫射放电时,X射线辐射脉冲的FWHM持续时间可以达到≈100ns。建立在脉冲周期性漫射放电的情况下,通过高压脉冲进料,其上升时间为50 ns,X射线量子的能量及其数量随着击穿电压的增加而增加。其中,保存了参数UM / PD。

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