This study investigates the dynamics of a compressed electron layer (CEL) when a circularly polarized laser pulse with a sharp front irradiates a high-density foil. A time-dependent model for CEL motion during the hole-boring stage is proposed to describe details of the interaction for any shape of laser pulse. The opacity case, where the laser pulse is totally reflected, is investigated using this model. The results obtained are consistent with the results from particle-in-cell (PIC) simulations. A relaxation distance determined by the laser-front steepness is necessary to build a stable CEL state before ions rejoin into the CEL. For the transparent case, the laser-front steepness is important for the formation of the stable CEL state at t...
The transverse expansion of the electrostatic sheath during target normal sheath acceleration of pro...
Interaction of a high-power laser pulse having a sharp front with a thin plasma layer is considered....
The propagation of fast electrons produced in the interaction of relativistically intense, picosecon...
<div>This study investigates the dynamics of a compressed electron layer (CEL) when a circularly pol...
This dissertation examines the motion of the electron critical density surface during interactions b...
Some typical electrons trajectories around a bubble regime in intense laser plasma interaction are i...
We report on experimental results of the fast electron transport in compressed plasmas, created ...
We present a theory for the acceleration of monoenergetic protons, trapped in a self-organized doubl...
The interaction of a high-power laser beam with plasma has been explored extensively in the context ...
International audienceWe study kinetic effects responsible for the transition to relativistic self-i...
The evolution of a high-density electron beam in the field of a super-intense laser pulse is conside...
International audienceUsing 1D and 2D PIC simulations, we describe and model the backward ejection o...
The interaction of free electrons with intense laser beams in vacuum is studied using a 3D test par...
The transverse expansion of the electrostatic sheath during target normal sheath acceleration of pro...
Interaction of a high-power laser pulse having a sharp front with a thin plasma layer is considered....
The propagation of fast electrons produced in the interaction of relativistically intense, picosecon...
<div>This study investigates the dynamics of a compressed electron layer (CEL) when a circularly pol...
This dissertation examines the motion of the electron critical density surface during interactions b...
Some typical electrons trajectories around a bubble regime in intense laser plasma interaction are i...
We report on experimental results of the fast electron transport in compressed plasmas, created ...
We present a theory for the acceleration of monoenergetic protons, trapped in a self-organized doubl...
The interaction of a high-power laser beam with plasma has been explored extensively in the context ...
International audienceWe study kinetic effects responsible for the transition to relativistic self-i...
The evolution of a high-density electron beam in the field of a super-intense laser pulse is conside...
International audienceUsing 1D and 2D PIC simulations, we describe and model the backward ejection o...
The interaction of free electrons with intense laser beams in vacuum is studied using a 3D test par...
The transverse expansion of the electrostatic sheath during target normal sheath acceleration of pro...
Interaction of a high-power laser pulse having a sharp front with a thin plasma layer is considered....
The propagation of fast electrons produced in the interaction of relativistically intense, picosecon...