The low-frequency limit of Maxwell equations is considered in the Maxwell-Vlasov system. This limit produces a neutral Vlasov system that captures essential features of plasma dynamics, while neglecting radiation effects. Euler-Poincar\'e reduction theory is used to show that the neutral Vlasov kinetic theory possesses a variational formulation in both Lagrangian and Eulerian coordinates. By construction, the model recovers all collisionless neutral models employed in plasma simulations. Then, comparisons between the neutral Vlasov system and hybrid kinetic-fluid models are presented in the linear regime
Laser plasma and beam plasma acceleration are promising routes towards a new generation of...
Collisionless plasmas, mostly present in astrophysical and space environments, often require a kinet...
Laser plasma and beam plasma acceleration are promising routes towards a new generation of particle ...
The low-frequency limit of Maxwell equations is considered in the Maxwell-Vlasov system. This limit ...
The low-frequency limit of Maxwell equations is considered in the Maxwell-Vlasov system. This limit ...
International audienceThe purpose of this paper is to bridge kinetic plasma descriptions and low fre...
Continuum Vlasov simulations can be utilized for highly accurate modelling of fully kinetic plasmas....
This article is concerned with the kinetic modeling, by means of the Vlasov equation, of charged par...
Accurate modelling of kinetic plasmas is computationally demanding. In order to accelerate Vlasov si...
In this article, we design Asymptotic-Preserving Particle-In-Cell methods for the Vlasov-Maxwell sys...
The study of the collisionless, non-linear electrostatic and electromagnetic plasma dynamics provide...
International audienceWe review the basic approximations underlying magnetohydrodynamic (MHD) theory...
A largely unsolved theoretical issue in controlled fusion research is the consistent kinetic treatme...
The mathematical description of laboratory fusion plasmas produced in Tokamaks is still challenging....
Revised version, 33 pages, accepted for publication (w/o Appendix B) in J. Stat. PhysInternational a...
Laser plasma and beam plasma acceleration are promising routes towards a new generation of...
Collisionless plasmas, mostly present in astrophysical and space environments, often require a kinet...
Laser plasma and beam plasma acceleration are promising routes towards a new generation of particle ...
The low-frequency limit of Maxwell equations is considered in the Maxwell-Vlasov system. This limit ...
The low-frequency limit of Maxwell equations is considered in the Maxwell-Vlasov system. This limit ...
International audienceThe purpose of this paper is to bridge kinetic plasma descriptions and low fre...
Continuum Vlasov simulations can be utilized for highly accurate modelling of fully kinetic plasmas....
This article is concerned with the kinetic modeling, by means of the Vlasov equation, of charged par...
Accurate modelling of kinetic plasmas is computationally demanding. In order to accelerate Vlasov si...
In this article, we design Asymptotic-Preserving Particle-In-Cell methods for the Vlasov-Maxwell sys...
The study of the collisionless, non-linear electrostatic and electromagnetic plasma dynamics provide...
International audienceWe review the basic approximations underlying magnetohydrodynamic (MHD) theory...
A largely unsolved theoretical issue in controlled fusion research is the consistent kinetic treatme...
The mathematical description of laboratory fusion plasmas produced in Tokamaks is still challenging....
Revised version, 33 pages, accepted for publication (w/o Appendix B) in J. Stat. PhysInternational a...
Laser plasma and beam plasma acceleration are promising routes towards a new generation of...
Collisionless plasmas, mostly present in astrophysical and space environments, often require a kinet...
Laser plasma and beam plasma acceleration are promising routes towards a new generation of particle ...