Modeling laser-plasma interaction (LPI) processes in real-size experiments scale is recognized as a challenging task. For explorering the influence of various instabilities in LPI processes, a three-dimensional laser and plasma code (LAP3D) has been developed, which includes filamentation, stimulated Brillouin backscattering (SBS), stimulated Raman backscattering (SRS), non-local heat transport and plasmas flow computation modules. In this program, a second-order upwind scheme is applied to solve the plasma equations which are represented by an Euler fluid model. Operator splitting method is used for solving the equations of the light wave propagation, where the Fast Fourier translation (FFT) is applied to compute the diffraction operator a...
Laser-plasma interaction physics is studied in the context of laser fusion using the six-beam laser ...
The LANL TRIDENT laser system is being used for fundamental experiments which study the interaction ...
International audienceWe present a solver of 3D two-fluid plasma model for the simulation of short-p...
The forthcoming laser installations related to inertial confinement fusion, Laser Mégajoule (LMJ) (F...
The purpose of this LDRD was the study of parametric instabilities on a laser-produced plasma, addre...
International audienceType-III-burst radio signals can be mimicked in the laboratory via laser-plasm...
We present millimeter-scale numerical studies we have performed about laser-plasma interaction. We h...
The propagation of intense laser beam through a plasma ablated from a solid target by a focused ns l...
In 2006/2007 we continued to study several issues related to underdense laser-plasma interactions. W...
The first calculations of time-dependent laser-plasma fllamentation in three dimensions are reported...
International audienceA number of physical processes in laser-plasma interaction can be described wi...
Recent analysis and modeling of Nova experiments which address our understanding of stimulated Brill...
Many nonlinear processes may affect the laser beam propagation and the laser energy deposition in t...
The evolution of a short, intense laser pulse propagating in an underdense plasma is of particular i...
Laser-plasma interaction physics is studied in the context of laser fusion using the six-beam laser ...
The LANL TRIDENT laser system is being used for fundamental experiments which study the interaction ...
International audienceWe present a solver of 3D two-fluid plasma model for the simulation of short-p...
The forthcoming laser installations related to inertial confinement fusion, Laser Mégajoule (LMJ) (F...
The purpose of this LDRD was the study of parametric instabilities on a laser-produced plasma, addre...
International audienceType-III-burst radio signals can be mimicked in the laboratory via laser-plasm...
We present millimeter-scale numerical studies we have performed about laser-plasma interaction. We h...
The propagation of intense laser beam through a plasma ablated from a solid target by a focused ns l...
In 2006/2007 we continued to study several issues related to underdense laser-plasma interactions. W...
The first calculations of time-dependent laser-plasma fllamentation in three dimensions are reported...
International audienceA number of physical processes in laser-plasma interaction can be described wi...
Recent analysis and modeling of Nova experiments which address our understanding of stimulated Brill...
Many nonlinear processes may affect the laser beam propagation and the laser energy deposition in t...
The evolution of a short, intense laser pulse propagating in an underdense plasma is of particular i...
Laser-plasma interaction physics is studied in the context of laser fusion using the six-beam laser ...
The LANL TRIDENT laser system is being used for fundamental experiments which study the interaction ...
International audienceWe present a solver of 3D two-fluid plasma model for the simulation of short-p...