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Identifying critical plastic activity in electrodes under intense electric fields and the link to breakdown nucleation

The hypothesis that arc nucleation is related to plastic activity due to collective motion of dislocation in the cathode is examined via experiments and theoretical efforts over the last few years. Current theoretical and experimental observations indicating specific dislocation activity related to...

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Autores principales: Ashkenazy, Yinon, Popov, Inna, Yashar, Ayelet, Gad, Raanan, Profatilova, Iaroslava, Paszkiewicz, Jan, Peacock, Ruth, Wuensch, Walter
Lenguaje:eng
Publicado: 2021
Acceso en línea:https://dx.doi.org/10.1109/ISDEIV46977.2021.9586897
http://cds.cern.ch/record/2799365
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author Ashkenazy, Yinon
Popov, Inna
Yashar, Ayelet
Gad, Raanan
Profatilova, Iaroslava
Paszkiewicz, Jan
Peacock, Ruth
Wuensch, Walter
author_facet Ashkenazy, Yinon
Popov, Inna
Yashar, Ayelet
Gad, Raanan
Profatilova, Iaroslava
Paszkiewicz, Jan
Peacock, Ruth
Wuensch, Walter
author_sort Ashkenazy, Yinon
collection CERN
description The hypothesis that arc nucleation is related to plastic activity due to collective motion of dislocation in the cathode is examined via experiments and theoretical efforts over the last few years. Current theoretical and experimental observations indicating specific dislocation activity related to the applied high field are reviewed. In addition, I discuss the challenges that lie ahead in trying to confirm this hypothesis as well as put it to use.
id cern-2799365
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2021
record_format invenio
spelling cern-27993652022-01-14T07:54:42Zdoi:10.1109/ISDEIV46977.2021.9586897http://cds.cern.ch/record/2799365engAshkenazy, YinonPopov, InnaYashar, AyeletGad, RaananProfatilova, IaroslavaPaszkiewicz, JanPeacock, RuthWuensch, WalterIdentifying critical plastic activity in electrodes under intense electric fields and the link to breakdown nucleationThe hypothesis that arc nucleation is related to plastic activity due to collective motion of dislocation in the cathode is examined via experiments and theoretical efforts over the last few years. Current theoretical and experimental observations indicating specific dislocation activity related to the applied high field are reviewed. In addition, I discuss the challenges that lie ahead in trying to confirm this hypothesis as well as put it to use.oai:cds.cern.ch:27993652021
spellingShingle Ashkenazy, Yinon
Popov, Inna
Yashar, Ayelet
Gad, Raanan
Profatilova, Iaroslava
Paszkiewicz, Jan
Peacock, Ruth
Wuensch, Walter
Identifying critical plastic activity in electrodes under intense electric fields and the link to breakdown nucleation
title Identifying critical plastic activity in electrodes under intense electric fields and the link to breakdown nucleation
title_full Identifying critical plastic activity in electrodes under intense electric fields and the link to breakdown nucleation
title_fullStr Identifying critical plastic activity in electrodes under intense electric fields and the link to breakdown nucleation
title_full_unstemmed Identifying critical plastic activity in electrodes under intense electric fields and the link to breakdown nucleation
title_short Identifying critical plastic activity in electrodes under intense electric fields and the link to breakdown nucleation
title_sort identifying critical plastic activity in electrodes under intense electric fields and the link to breakdown nucleation
url https://dx.doi.org/10.1109/ISDEIV46977.2021.9586897
http://cds.cern.ch/record/2799365
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