AbstractThe existence of global smooth solutions to the multi-dimensional hydrodynamic model for plasmas of electrons and positively charged ions is shown under the assumption that the initial densities are close to a constant. The model consists of the conservation laws for the particle densities and the current densities, coupled to the Poisson equation for the electrostatic potential. Furthermore, it is proved that the particle densities converge exponentially fast to the (constant) steady state. The proof uses a higher-order energy method inspired from extended thermodynamics
International audienceThe bitemperature Euler model describes a crucial step of Inertial Confinement...
(Joint work with Y. Guo, E. Grenier and M. Suzuki) We consider the 2 fluid Euler-Poisson equation in...
This work examines the exact hydrodynamic equations describing fluctuations in two component plasmas...
The existence of global smooth solutions to the multi-dimensional hydrodynamic model for plasmas of ...
AbstractThe existence of global smooth solutions to the multidimensional hydrodynamic model for plas...
AbstractA kind of two-fluid system in plasmas is studied in this paper. This system describes rich d...
We study smooth, global-in-time solutions of the Vlasov-Poisson system in the plasma physical case t...
[[abstract]]This article considers the fluid model for the discharge of plasma particle species in d...
Communicated by [editor] Abstract. The Euler-Maxwell system as a hydrodynamic model for plasma physi...
AbstractGlobal existence of a solution to the system of isothermal 1-D Euler equations for electrons...
We study a positively charged Vlasov-Poisson plasma in which N negative point charges are immersed. ...
Abstract The limit of the vanishing ratio of the electron mass to the ion mass in the isentropic t...
A model hierarchy of macroscopic equations for plasmas consisting of electrons and ions is presented...
A new class of accelerating, exact, explicit and simple solutions of relativistic hydrodynamics is p...
: We study, globaly in time, the velocity distribution f(v; t) of a spatially homogeneous system th...
International audienceThe bitemperature Euler model describes a crucial step of Inertial Confinement...
(Joint work with Y. Guo, E. Grenier and M. Suzuki) We consider the 2 fluid Euler-Poisson equation in...
This work examines the exact hydrodynamic equations describing fluctuations in two component plasmas...
The existence of global smooth solutions to the multi-dimensional hydrodynamic model for plasmas of ...
AbstractThe existence of global smooth solutions to the multidimensional hydrodynamic model for plas...
AbstractA kind of two-fluid system in plasmas is studied in this paper. This system describes rich d...
We study smooth, global-in-time solutions of the Vlasov-Poisson system in the plasma physical case t...
[[abstract]]This article considers the fluid model for the discharge of plasma particle species in d...
Communicated by [editor] Abstract. The Euler-Maxwell system as a hydrodynamic model for plasma physi...
AbstractGlobal existence of a solution to the system of isothermal 1-D Euler equations for electrons...
We study a positively charged Vlasov-Poisson plasma in which N negative point charges are immersed. ...
Abstract The limit of the vanishing ratio of the electron mass to the ion mass in the isentropic t...
A model hierarchy of macroscopic equations for plasmas consisting of electrons and ions is presented...
A new class of accelerating, exact, explicit and simple solutions of relativistic hydrodynamics is p...
: We study, globaly in time, the velocity distribution f(v; t) of a spatially homogeneous system th...
International audienceThe bitemperature Euler model describes a crucial step of Inertial Confinement...
(Joint work with Y. Guo, E. Grenier and M. Suzuki) We consider the 2 fluid Euler-Poisson equation in...
This work examines the exact hydrodynamic equations describing fluctuations in two component plasmas...