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Runaway electron beams formed in atmospheric pressure air in a diode with dielectric films

机译:带有介电膜的二极管在大气压空气中形成的失控电子束

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The paper reports on a study of a supershort avalanche electron beam (SAEB) formed in atmospheric pressure air in a diode with dielectric films. The study shows that the number of electrons downstream of an Al foil anode increases gradually as a dielectric film 50 μm thick is shifted from cathode to anode. With a film 100 μm thick placed at 3 mm from the cathode, the number of electrons decreases ~4 times, whereas their number with the same foil placed at 1 and 11 mm decreases by no more than 30 %. It is supposed that the dielectric at 3 mm from the cathode substantially influences the formation of an ionization wave and that increasing its thickness causes a rapid decrease in SAEB amplitude.
机译:该论文报道了在具有介电膜的二极管中在大气中形成的超短雪崩电子束(SAEB)的研究。研究表明,随着50μm厚的介电膜从阴极转移到阳极,铝箔阳极下游的电子数量逐渐增加。在距阴极3毫米处放置100μm厚的膜时,电子数量减少约4倍,而在1毫米和11毫米处放置相同箔的电子数量减少不超过30%。据推测,距阴极3毫米处的电介质会严重影响电离波的形成,并且其厚度的增加会导致SAEB振幅的快速降低。

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