Propagation of localized structures in relativistic magnetized electron-positron plasmas using particle-in-cell simulations
Author
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López, Rodrigo A.
Author
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Muñoz, Víctor
Author
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Vinas, Adolfo F.
Author
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Valdivia Hepp, Juan
Admission date
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2015-12-17T03:17:03Z
Available date
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2015-12-17T03:17:03Z
Publication date
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2015
Cita de ítem
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Physics of Plasmas Volumen: 22 Número: 9 Sep 2015
en_US
Identifier
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DOI: 10.1063/1.4930266
Identifier
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https://repositorio.uchile.cl/handle/2250/135810
General note
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Artículo de publicación ISI
en_US
General note
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Sin acceso a texto completo
Abstract
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We use a particle-in-cell simulation to study the propagation of localized structures in a magnetized electron-positron plasma with relativistic finite temperature. We use as initial condition for the simulation an envelope soliton solution of the nonlinear Schrodinger equation, derived from the relativistic two fluid equations in the strongly magnetized limit. This envelope soliton turns out not to be a stable solution for the simulation and splits in two localized structures propagating in opposite directions. However, these two localized structures exhibit a soliton-like behavior, as they keep their profile after they collide with each other due to the periodic boundary conditions. We also observe the formation of localized structures in the evolution of a spatially uniform circularly polarized Alfven wave. In both cases, the localized structures propagate with an amplitude independent velocity. (C) 2015 AIP Publishing LLC.