Methods of increasing the dielectric strength of the accelerating gap in an electron source with a plasma cathode

Abstract This work represents the investigations for decreasing acceleration gap breakdown probability of plasma source of electrons SOLO, with grid stabilization of the boundaries of the arc cathode plasma. We increased the distance to the treated target, bent the transportation channel of the elec...

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Published inJournal of physics. Conference series Vol. 2064; no. 1; pp. 12119 - 12125
Main Authors Moskvin, P V, Devyatkov, V N, Shin, V I, Vorobyov, M S, Koval, N N, Lopatin, I V
Format Journal Article
LanguageEnglish
Published IOP Publishing 01.11.2021
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Summary:Abstract This work represents the investigations for decreasing acceleration gap breakdown probability of plasma source of electrons SOLO, with grid stabilization of the boundaries of the arc cathode plasma. We increased the distance to the treated target, bent the transportation channel of the electron beam, created additional plasma in the anode space, and increased the beam front. The effect of the above measures on the breakdown probability when the target is exposed of a low-energy electron beam with a power density of up to 0.5 MW/cm 2 with a diameter of 2.5 cm was investigated separately. Beam deflection is most effective at relatively long pulse durations of 150 μs and accelerating voltage of 20 kV, rather than a lower one. It was possible to double the maximum power for the same beam transport length applied to a low-melting target. Preionization in the anode proved to be effective for relatively short beams of 15 μs duration.
ISSN:1742-6588
1742-6596
DOI:10.1088/1742-6596/2064/1/012119