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首页> 外文期刊>Technical physics letters: Letters to the Russian journal of applied physics >Effective regimes of runaway electron beam generation in helium, hydrogen, and nitrogen
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Effective regimes of runaway electron beam generation in helium, hydrogen, and nitrogen

机译:氦,氢和氮中电子束失控产生的有效机制

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摘要

Runaway electron beam parameters and current-voltage characteristics of discharge in helium, hydrogen, and nitrogen at pressures in the range of several Torr to several hundred Torr have been studied. It is found that the maximum amplitudes of supershort avalanche electron beams (SAEBs) with a pulse full width at half maximum (FWHM) of ~100 ps are achieved in helium, hydrogen, and nitrogen at a pressure of ~60, ~30, and ~10 Torr, respectively. It is shown that, as the gas pressure is increased in the indicated range, the breakdown voltage of the gas-filled gap decreases, which leads to a decrease in the SAEB current amplitude. At pressures of helium within 20-60 Torr, hydrogen within 10-30 Torr, and nitrogen within 3-10 Torr, the regime of the runaway electron beam generation changes and, by varying the pressure in the gas-filled diode in the indicated intervals, it is possible to smoothly control the current pulse duration (FWHM) from ~100 to ~500 ps, while the beam current amplitude increases by a factor of 1.5-3.
机译:已经研究了在几托到几百托范围内的压力下,氦,氢和氮中的失控电子束参数和放电电流-电压特性。结果发现,在氦,氢和氮的压力约为60,〜30和30的条件下,具有约100 ps的半峰脉冲全宽(FWHM)的超短雪崩电子束(SAEB)的最大振幅得以实现。分别约为10托。可以看出,随着气压在指定范围内增加,充气间隙的击穿电压降低,这导致SAEB电流幅值减小。在氦气压力在20-60 Torr之内,氢气在10-30 Torr之内,氮气在3-10 Torr之内时,失控电子束的产生方式会发生变化,并通过在指定的时间间隔内改变充气二极管的压力,可以将电流脉冲持续时间(FWHM)从〜100 ps平稳控制到〜500 ps,而束电流幅度增加1.5-3倍。

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