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Generation of dual pulses of the runaway electron beam current during the subnanosecond breakdown of atomic and molecular gases

机译:在亚纳秒级的原子和分子气体击穿过程中,电子束电流失控产生双脉冲

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摘要

With a diaphragm placed behind the anode foil, dual runaway electron beams have been provided in helium, hydrogen, nitrogen, and air under a pressure of several torrs to several dozen torrs and a high-voltage pulse amplitude of about 250 kV. These beams consist of two pulses with commensurable amplitudes with a time interval between them of several dozen picoseconds to several hundred picoseconds. It has been shown that the breakdown of the interelectrode gap at pressures from several torrs to several dozen torrs may occur in different regimes and dual pulses of the electron beam current are registered when the initial current through the gap is below 1 kA. It has been found that a supershort avalanche electron beam that consists of one pulse is generated when the delay of breakdown equals several hundred picoseconds. It has been shown that, when the gas pressure reaches several hundred Torr, including atmospheric pressure, the runaway electrons are detected behind the foil after the termination of the supershort avalanche electron beam pulse.
机译:通过在阳极箔的后面放置一个隔膜,在氦,氢,氮和空气中,在几托到几十托的压力下以及大约250 kV的高压脉冲振幅下提供了双失控电子束。这些光束由两个振幅可比较的脉冲组成,它们之间的时间间隔为几十皮秒到几百皮秒。已经表明,在从几托到几十托的压力下,极间间隙的击穿可能在不同的情况下发生,并且当通过间隙的初始电流低于1kA时,电子束电流的双脉冲被记录下来。已经发现,当击穿延迟等于几百皮秒时,产生由一个脉冲组成的超短雪崩电子束。已经表明,当气压达到包括大气压力在内的几百托时,在超短雪崩电子束脉冲终止之后,在箔片后面检测到失控的电子。

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