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Dynamic coupling between particle-in-cell and atomistic simulations

We propose a method to directly couple molecular dynamics, the finite element method, and particle-in-cell techniques to simulate metal surface response to high electric fields. We use this method to simulate the evolution of a field-emitting tip under thermal runaway by fully including the three-di...

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Detalles Bibliográficos
Autores principales: Veske, Mihkel, Kyritsakis, Andreas, Sjobak, Kyrre Ness, Zadin, Vahur, Aabloo, Alvo, Djurabekova, Flyura
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevE.101.053307
http://cds.cern.ch/record/2720240
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author Veske, Mihkel
Kyritsakis, Andreas
Sjobak, Kyrre Ness
Zadin, Vahur
Aabloo, Alvo
Djurabekova, Flyura
author_facet Veske, Mihkel
Kyritsakis, Andreas
Sjobak, Kyrre Ness
Zadin, Vahur
Aabloo, Alvo
Djurabekova, Flyura
author_sort Veske, Mihkel
collection CERN
description We propose a method to directly couple molecular dynamics, the finite element method, and particle-in-cell techniques to simulate metal surface response to high electric fields. We use this method to simulate the evolution of a field-emitting tip under thermal runaway by fully including the three-dimensional space-charge effects. We also present a comparison of the runaway process between two tip geometries of different widths. The results show with high statistical significance that in the case of sufficiently narrow field emitters, the thermal runaway occurs in cycles where intensive neutral evaporation alternates with cooling periods. The comparison with previous works shows that the evaporation rate in the regime of intensive evaporation is sufficient to ignite a plasma arc above the simulated field emitters.
id cern-2720240
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
record_format invenio
spelling cern-27202402022-01-14T14:57:24Zdoi:10.1103/PhysRevE.101.053307doi:10.1103/PhysRevE.101.053307http://cds.cern.ch/record/2720240engVeske, MihkelKyritsakis, AndreasSjobak, Kyrre NessZadin, VahurAabloo, AlvoDjurabekova, FlyuraDynamic coupling between particle-in-cell and atomistic simulationscs.CEComputing and ComputersWe propose a method to directly couple molecular dynamics, the finite element method, and particle-in-cell techniques to simulate metal surface response to high electric fields. We use this method to simulate the evolution of a field-emitting tip under thermal runaway by fully including the three-dimensional space-charge effects. We also present a comparison of the runaway process between two tip geometries of different widths. The results show with high statistical significance that in the case of sufficiently narrow field emitters, the thermal runaway occurs in cycles where intensive neutral evaporation alternates with cooling periods. The comparison with previous works shows that the evaporation rate in the regime of intensive evaporation is sufficient to ignite a plasma arc above the simulated field emitters.We propose a method to directly couple molecular dynamics, finite element method and particle-in-cell techniques to simulate metal surface response to high electric fields. We use this method to simulate the evolution of a field emitting tip under thermal runaway by fully including the 3D space-charge effects. We also present a comparison of the runaway process between the two tip geometries of different widths. The results show with high statistical significance that in case of sufficiently narrow field emitters, the thermal runaway occurs in cycles where intensive neutral evaporation alternates with the cooling periods. The comparison with previous worarXiv:1906.08125oai:cds.cern.ch:27202402020
spellingShingle cs.CE
Computing and Computers
Veske, Mihkel
Kyritsakis, Andreas
Sjobak, Kyrre Ness
Zadin, Vahur
Aabloo, Alvo
Djurabekova, Flyura
Dynamic coupling between particle-in-cell and atomistic simulations
title Dynamic coupling between particle-in-cell and atomistic simulations
title_full Dynamic coupling between particle-in-cell and atomistic simulations
title_fullStr Dynamic coupling between particle-in-cell and atomistic simulations
title_full_unstemmed Dynamic coupling between particle-in-cell and atomistic simulations
title_short Dynamic coupling between particle-in-cell and atomistic simulations
title_sort dynamic coupling between particle-in-cell and atomistic simulations
topic cs.CE
Computing and Computers
url https://dx.doi.org/10.1103/PhysRevE.101.053307
https://dx.doi.org/10.1103/PhysRevE.101.053307
http://cds.cern.ch/record/2720240
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AT sjobakkyrreness dynamiccouplingbetweenparticleincellandatomisticsimulations
AT zadinvahur dynamiccouplingbetweenparticleincellandatomisticsimulations
AT aablooalvo dynamiccouplingbetweenparticleincellandatomisticsimulations
AT djurabekovaflyura dynamiccouplingbetweenparticleincellandatomisticsimulations