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EFFECT OF SECONDARY ELECTRON EMISSION ON SUBNANOSECOND BREAKDOWN IN HIGH-VOLTAGE PULSE DISCHARGE

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dc.contributor Казанский (Приволжский) федеральный университет
dc.contributor.author Schweigert I.V. ru_RU
dc.contributor.author Alexandrov A.L. ru_RU
dc.contributor.author Gugin P. ru_RU
dc.contributor.author Lavrukhin M. ru_RU
dc.contributor.author Bokhan P.A. ru_RU
dc.contributor.author Zakrevsky Dm.E. ru_RU
dc.date.accessioned 2018-01-11T07:55:46Z
dc.date.available 2018-01-11T07:55:46Z
dc.date.issued 2017
dc.identifier.uri http://dspace.kpfu.ru/xmlui/handle/net/117496
dc.description.abstract A subnanosecond breakdown in high-voltage pulse discharge is studied in experiment and in kinetic simulations for mid-high pressure in helium. It is shown that the characteristic time of the current growth can be controlled by the secondary electron emission. We test the influence of secondary electron yield on plasma parameters for three types of cathodes made from titanium, silicon carbide and Cu Al Mg-alloy. By changing the pulse voltage amplitude and gas pressure, the area of existence of subnanosecond breakdown is identified. ru_RU
dc.relation.ispartofseries "ФИЗИКА НИЗКОТЕМПЕРАТУРНОЙ ПЛАЗМЫ" ФНТП-2017 ru_RU
dc.subject - ru_RU
dc.title EFFECT OF SECONDARY ELECTRON EMISSION ON SUBNANOSECOND BREAKDOWN IN HIGH-VOLTAGE PULSE DISCHARGE ru_RU
dc.type article
dc.identifier.udk -
dc.description.pages 39-39


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