Driven one-component plasmas

Detalhes bibliográficos
Autor(a) principal: Rizzato, Felipe Barbedo
Data de Publicação: 2009
Outros Autores: Pakter, Renato, Levin, Yan
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Repositório Institucional da UFRGS
Texto Completo: http://hdl.handle.net/10183/101819
Resumo: A statistical theory is presented that allows the calculation of the stationary state achieved by a driven one-component plasma after a process of collisionless relaxation. The stationary Vlasov equation with appropriate boundary conditions is reduced to an ordinary differential equation, which is then solved numerically. The solution is then compared with the molecular-dynamics simulation. A perfect agreement is found between the theory and the simulations. The full current-voltage phase diagram is constructed.
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spelling Rizzato, Felipe BarbedoPakter, RenatoLevin, Yan2014-08-26T09:26:12Z20091539-3755http://hdl.handle.net/10183/101819000725849A statistical theory is presented that allows the calculation of the stationary state achieved by a driven one-component plasma after a process of collisionless relaxation. The stationary Vlasov equation with appropriate boundary conditions is reduced to an ordinary differential equation, which is then solved numerically. The solution is then compared with the molecular-dynamics simulation. A perfect agreement is found between the theory and the simulations. The full current-voltage phase diagram is constructed.application/pdfengPhysical review. E, Statistical, nonlinear and soft matter physics. Vol. 80, no. 2 (Aug. 2009), 026115, 5 p.Física estatísticaEquação de BoltzmannEquacao de vlasovProblemas de contornoSimulação de plasmasProcessos de transporte em plasmasDriven one-component plasmasEstrangeiroinfo:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/openAccessreponame:Repositório Institucional da UFRGSinstname:Universidade Federal do Rio Grande do Sul (UFRGS)instacron:UFRGSORIGINAL000725849.pdf000725849.pdfTexto completo (inglês)application/pdf87279http://www.lume.ufrgs.br/bitstream/10183/101819/1/000725849.pdfde16d247475c07e2b388a33917eeda1dMD51TEXT000725849.pdf.txt000725849.pdf.txtExtracted Texttext/plain20184http://www.lume.ufrgs.br/bitstream/10183/101819/2/000725849.pdf.txteb059e11dbdf8305dbc2286325687996MD52THUMBNAIL000725849.pdf.jpg000725849.pdf.jpgGenerated Thumbnailimage/jpeg1968http://www.lume.ufrgs.br/bitstream/10183/101819/3/000725849.pdf.jpgb7ce6b3d9fc606fbc9526b31a66bddb5MD5310183/1018192023-08-31 03:34:02.078023oai:www.lume.ufrgs.br:10183/101819Repositório de PublicaçõesPUBhttps://lume.ufrgs.br/oai/requestopendoar:2023-08-31T06:34:02Repositório Institucional da UFRGS - Universidade Federal do Rio Grande do Sul (UFRGS)false
dc.title.pt_BR.fl_str_mv Driven one-component plasmas
title Driven one-component plasmas
spellingShingle Driven one-component plasmas
Rizzato, Felipe Barbedo
Física estatística
Equação de Boltzmann
Equacao de vlasov
Problemas de contorno
Simulação de plasmas
Processos de transporte em plasmas
title_short Driven one-component plasmas
title_full Driven one-component plasmas
title_fullStr Driven one-component plasmas
title_full_unstemmed Driven one-component plasmas
title_sort Driven one-component plasmas
author Rizzato, Felipe Barbedo
author_facet Rizzato, Felipe Barbedo
Pakter, Renato
Levin, Yan
author_role author
author2 Pakter, Renato
Levin, Yan
author2_role author
author
dc.contributor.author.fl_str_mv Rizzato, Felipe Barbedo
Pakter, Renato
Levin, Yan
dc.subject.por.fl_str_mv Física estatística
Equação de Boltzmann
Equacao de vlasov
Problemas de contorno
Simulação de plasmas
Processos de transporte em plasmas
topic Física estatística
Equação de Boltzmann
Equacao de vlasov
Problemas de contorno
Simulação de plasmas
Processos de transporte em plasmas
description A statistical theory is presented that allows the calculation of the stationary state achieved by a driven one-component plasma after a process of collisionless relaxation. The stationary Vlasov equation with appropriate boundary conditions is reduced to an ordinary differential equation, which is then solved numerically. The solution is then compared with the molecular-dynamics simulation. A perfect agreement is found between the theory and the simulations. The full current-voltage phase diagram is constructed.
publishDate 2009
dc.date.issued.fl_str_mv 2009
dc.date.accessioned.fl_str_mv 2014-08-26T09:26:12Z
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dc.relation.ispartof.pt_BR.fl_str_mv Physical review. E, Statistical, nonlinear and soft matter physics. Vol. 80, no. 2 (Aug. 2009), 026115, 5 p.
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