Investigation of Laser wakefield acceleration using relativistic Vlasov-‎Maxwell code

In this paper we investigate the electron laser wakefield acceleration using numerical solution of relativistic Vlasov-Maxwell equations with Semi-Lagrangian method. We found optimum pulse length to excite strong wakefields by investigation of electric fields and density variation, which caused by p...

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Main Authors: M Ghorbanalilu, S.N Razavinia
Format: Article
Language:English
Published: Isfahan University of Technology 2021-02-01
Series:Iranian Journal of Physics Research
Subjects:
Online Access:http://ijpr.iut.ac.ir/article_1657_a00e8073c2020d617e094628c2c3a15d.pdf
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author M Ghorbanalilu
S.N Razavinia
author_facet M Ghorbanalilu
S.N Razavinia
author_sort M Ghorbanalilu
collection DOAJ
description In this paper we investigate the electron laser wakefield acceleration using numerical solution of relativistic Vlasov-Maxwell equations with Semi-Lagrangian method. We found optimum pulse length to excite strong wakefields by investigation of electric fields and density variation, which caused by propagation of intense relativistic laser pulse through underdense plasma as well as average kinetic energy of electrons, for lasers with different pulse lengths.
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publisher Isfahan University of Technology
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spelling doaj.art-e9185c48b82a4cee8c6efad61311d5c72022-12-21T22:12:12ZengIsfahan University of TechnologyIranian Journal of Physics Research1682-69572345-36642021-02-0120465766510.47176/ijpr.20.4.317541657Investigation of Laser wakefield acceleration using relativistic Vlasov-‎Maxwell codeM Ghorbanalilu0S.N Razavinia1Department of Physics, University of Shahid Beheshti, Tehran, Iran‎‎Department of Physics, University of Shahid Beheshti, Tehran, Iran‎‎In this paper we investigate the electron laser wakefield acceleration using numerical solution of relativistic Vlasov-Maxwell equations with Semi-Lagrangian method. We found optimum pulse length to excite strong wakefields by investigation of electric fields and density variation, which caused by propagation of intense relativistic laser pulse through underdense plasma as well as average kinetic energy of electrons, for lasers with different pulse lengths.http://ijpr.iut.ac.ir/article_1657_a00e8073c2020d617e094628c2c3a15d.pdfvlasov-maxwellsemi-lagrangian methodlaser wakefield accelerationoptimum length ‎ ‎‎
spellingShingle M Ghorbanalilu
S.N Razavinia
Investigation of Laser wakefield acceleration using relativistic Vlasov-‎Maxwell code
Iranian Journal of Physics Research
vlasov-maxwell
semi-lagrangian method
laser wakefield acceleration
optimum length ‎ ‎‎
title Investigation of Laser wakefield acceleration using relativistic Vlasov-‎Maxwell code
title_full Investigation of Laser wakefield acceleration using relativistic Vlasov-‎Maxwell code
title_fullStr Investigation of Laser wakefield acceleration using relativistic Vlasov-‎Maxwell code
title_full_unstemmed Investigation of Laser wakefield acceleration using relativistic Vlasov-‎Maxwell code
title_short Investigation of Laser wakefield acceleration using relativistic Vlasov-‎Maxwell code
title_sort investigation of laser wakefield acceleration using relativistic vlasov ‎maxwell code
topic vlasov-maxwell
semi-lagrangian method
laser wakefield acceleration
optimum length ‎ ‎‎
url http://ijpr.iut.ac.ir/article_1657_a00e8073c2020d617e094628c2c3a15d.pdf
work_keys_str_mv AT mghorbanalilu investigationoflaserwakefieldaccelerationusingrelativisticvlasovmaxwellcode
AT snrazavinia investigationoflaserwakefieldaccelerationusingrelativisticvlasovmaxwellcode