The expansion of semi-infinite laser produced plasma into vacuum is analyzed with a hydrodynamic model for cold ions assuming electrons modeled by a kappa-type distribution. Self-similar analytic expressions for the potential, velocity, and density of the plasma have been derived. It is shown that nonthermal energetic electrons have the role of accelerating the self-similar expansion
Interaction of medium to high peak power laser pulses with solid materials produces a plasma that ex...
It has been known since the early days of plasma physics research that superthermal electrons are ge...
We determine conditions allowing to simplify the description of the impact of an arbitrarily intense...
In this work, self-similar expansion of one-dimensional collisionless plasma into vacuum has been an...
Simple analytical models are presented for hydrodynamic expansion of laser-produced plasma governed ...
The collisionless expansion of plasma with cold ions and nonextensive distributed electrons into vac...
A new self-similar solution is presented which describes non-relativistic expansion of a finite pla...
International audienceThe distribution function of electrons accelerated by intense laser pulses at ...
International audienceWe present a self-similar three-dimensional and spherically symmetric fluid mo...
The expansion mechanism of a partially ionized plasma produced by laser interaction with solid targe...
A comprehensive theory is developed to describe the expansion of a plasma into vacuum with a two-tem...
It is shown that, under the influence of a monochromatic HF electric field (laser beam), both the el...
A comprehensive theory is developped to describe the expansion of a plasma into a vacuum with a two-...
The results of analytical treatment and computer simulation of the interaction between the relativis...
The expansion dynamics of a finite-size plasma is examined from an analytical perspective. Results r...
Interaction of medium to high peak power laser pulses with solid materials produces a plasma that ex...
It has been known since the early days of plasma physics research that superthermal electrons are ge...
We determine conditions allowing to simplify the description of the impact of an arbitrarily intense...
In this work, self-similar expansion of one-dimensional collisionless plasma into vacuum has been an...
Simple analytical models are presented for hydrodynamic expansion of laser-produced plasma governed ...
The collisionless expansion of plasma with cold ions and nonextensive distributed electrons into vac...
A new self-similar solution is presented which describes non-relativistic expansion of a finite pla...
International audienceThe distribution function of electrons accelerated by intense laser pulses at ...
International audienceWe present a self-similar three-dimensional and spherically symmetric fluid mo...
The expansion mechanism of a partially ionized plasma produced by laser interaction with solid targe...
A comprehensive theory is developed to describe the expansion of a plasma into vacuum with a two-tem...
It is shown that, under the influence of a monochromatic HF electric field (laser beam), both the el...
A comprehensive theory is developped to describe the expansion of a plasma into a vacuum with a two-...
The results of analytical treatment and computer simulation of the interaction between the relativis...
The expansion dynamics of a finite-size plasma is examined from an analytical perspective. Results r...
Interaction of medium to high peak power laser pulses with solid materials produces a plasma that ex...
It has been known since the early days of plasma physics research that superthermal electrons are ge...
We determine conditions allowing to simplify the description of the impact of an arbitrarily intense...