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Anisotropic Boltzmann-Gibbs dynamics of ...
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Document type :
Article dans une revue scientifique: Article original
DOI :
10.3934/krm.2019024
Title :
Anisotropic Boltzmann-Gibbs dynamics of strongly magnetized Vlasov-Fokker-Planck equations
Author(s) :
Herda, Maxime [Auteur correspondant] refId
Laboratoire Paul Painlevé - UMR 8524 [LPP]
Reliable numerical approximations of dissipative systems [RAPSODI]
Rodrigues, Luis Miguel [Auteur]
Institut de Recherche Mathématique de Rennes [IRMAR]
Journal title :
Kinetic and Related Models
Pages :
593-636
Publisher :
AIMS
Publication date :
2019
ISSN :
1937-5093
English keyword(s) :
plasma physics
Gibbs equilibrium
Maxwell-Boltzmann distribution
Fokker-Planck operator
Vlasov equation
disparate mass
hypocoercivity
strong magnetic field
gyrokinetic theory
HAL domain(s) :
Mathématiques [math]/Equations aux dérivées partielles [math.AP]
Physique [physics]/Physique [physics]/Physique des plasmas [physics.plasm-ph]
English abstract : [en]
We consider various sets of Vlasov-Fokker-Planck equations modeling the dynamics of charged particles in a plasma under the effect of a strong magnetic field. For each of them in a regime where the strength of the magnetic ...
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We consider various sets of Vlasov-Fokker-Planck equations modeling the dynamics of charged particles in a plasma under the effect of a strong magnetic field. For each of them in a regime where the strength of the magnetic field is effectively stronger than that of collisions we first formally derive asymptotically reduced models. In this regime, strong anisotropic phenomena occur; while equilibrium along magnetic field lines is asymptotically reached our asymptotic models capture a non trivial dynamics in the perpendicular directions. We do check that in any case the obtained asymptotic model defines a well-posed dynamical system and when self consistent electric fields are neglected we provide a rigorous mathematical justification of the formally derived systems. In this last step we provide a complete control on solutions by developing anisotropic hypocoercive estimates.Show less >
Language :
Anglais
Peer reviewed article :
Oui
Audience :
Internationale
Popular science :
Non
ANR Project :
Frontières, numérique, dispersion.
Centre de Mathématiques Henri Lebesgue : fondements, interactions, applications et Formation
Collections :
  • Laboratoire Paul Painlevé - UMR 8524
Source :
Harvested from HAL
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