International audienceWe present a self-similar three-dimensional and spherically symmetric fluid model of the expansion of an either globally neutral or globally charged collisionless plasma into vacuum. As in previous works by other authors the key parameter of the model is the ratio of the electron Debye length to the radius R of the expanding ion sphere. The main difference with respect to the recently published model of Murakami and Basko (2006 Phys. Plasmas 13 2105) is that the electron temperature is spatially non-uniform. The major consequence of the spatial variability is that the self-similar solution is characterized by the presence of a sharp electron front at some finite distance ahead of the ion front. Explicit analytic expres...
Abstract Fully kinetic particle-in-cell simulations are carried out to study ion acceleration in...
Simple analytical models are presented for hydrodynamic expansion of laser-produced plasma governed ...
Plasma expansion in diverging magnetic fields are commonly encountered in astrophysical plasmas. Mag...
International audienceWe present a self-similar three-dimensional and spherically symmetric fluid mo...
A new self-similar solution is presented which describes non-relativistic expansion of a finite pla...
In this work, self-similar expansion of one-dimensional collisionless plasma into vacuum has been an...
The expansion into vacuum of a one-dimensional, collisionless, negative ion plasma is investigated i...
The expansion of semi-infinite laser produced plasma into vacuum is analyzed with a hydrodynamic mod...
The collisionless expansion of spherical plasmas composed of cold ions and hot electrons is analyzed...
The collisionless expansion of plasma with cold ions and nonextensive distributed electrons into vac...
We study the steady-state expansion of a collisionless, electrostatic, quasi-neutral plasma plume i...
This paper considers the asymptotic and numerical solution of a simple model for the expansion of a ...
The space-time evolution of an initial step-like plasma density variation is studied. We give partic...
International audienceDensity effects in ionized matter require particular attention since they modi...
The classical problem of the interaction of a nonemitting spherical body with a zero mean-free-path ...
Abstract Fully kinetic particle-in-cell simulations are carried out to study ion acceleration in...
Simple analytical models are presented for hydrodynamic expansion of laser-produced plasma governed ...
Plasma expansion in diverging magnetic fields are commonly encountered in astrophysical plasmas. Mag...
International audienceWe present a self-similar three-dimensional and spherically symmetric fluid mo...
A new self-similar solution is presented which describes non-relativistic expansion of a finite pla...
In this work, self-similar expansion of one-dimensional collisionless plasma into vacuum has been an...
The expansion into vacuum of a one-dimensional, collisionless, negative ion plasma is investigated i...
The expansion of semi-infinite laser produced plasma into vacuum is analyzed with a hydrodynamic mod...
The collisionless expansion of spherical plasmas composed of cold ions and hot electrons is analyzed...
The collisionless expansion of plasma with cold ions and nonextensive distributed electrons into vac...
We study the steady-state expansion of a collisionless, electrostatic, quasi-neutral plasma plume i...
This paper considers the asymptotic and numerical solution of a simple model for the expansion of a ...
The space-time evolution of an initial step-like plasma density variation is studied. We give partic...
International audienceDensity effects in ionized matter require particular attention since they modi...
The classical problem of the interaction of a nonemitting spherical body with a zero mean-free-path ...
Abstract Fully kinetic particle-in-cell simulations are carried out to study ion acceleration in...
Simple analytical models are presented for hydrodynamic expansion of laser-produced plasma governed ...
Plasma expansion in diverging magnetic fields are commonly encountered in astrophysical plasmas. Mag...