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Runaway electrons and x-ray emission in air and other gases during discharges with long rise time of voltage pulses

机译:在具有长上升电压脉冲时的排放期间,空气和其他气体中的失控电子和X射线发射

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The objective of the work is to study effect of the rise time of voltage pulses ranged from 15 ns to 1.5 μs on generation of runaway electron beams and X-ray radiation in nonuniform electric field. Three setups and different pressures of air, nitrogen, argon and helium were used. The experiments on the setup #1 have confirm that there are different regimes of generation of runaway electrons and X-ray emission when voltage pulses with a long front duration are used. When voltage pulse amplitude reached 150 kV at a pulse rise time of 1.5 μs, the new results was obtained on the setup #3. At this setup, a runaway electron beam was registered by a collector in argon, air, and nitrogen at pressures up to ≈ 12.5 kPa. When using helium, a supershort avalanches electron beam (SAEB) was obtained at a pressure of 100 kPa.
机译:该工作的目的是研究在非均匀电场的失控电子束和X射线辐射的产生中的电压脉冲的上升时间的效果。使用了三种设置和不同的空气,氮,氩气和氦的压力。在设置#1上的实验已经确认,当使用具有长前持续时间的电压脉冲时,存在不同的失控电子和X射线发射的制度。当电压脉冲幅度在1.5μs的脉冲上升时间达到150 kV时,在设置#3上获得了新的结​​果。在该设置中,在氩气,空气和氮气中的收集器在高达≈125kPa的压力下注册失控电子束。使用氦气时,在100kPa的压力下获得超答雪崩电子束(SAEB)。

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