International audienceA classical Molecular Dynamics code has been developed to simulate dense plasmas i.e. neutral systems of interacting ions and electrons. Our goal is to design a tool that relies on a reduced set of microscopic mechanisms in order to obtain solutions of complex time dependent n-body problems and to allow an efficient description of the plasma states between classical high temperature systems to strongly coupled plasmas. Our present objective is an attempt to explore the behavior of such a classical approach for typical conditions of warm dense matter. We calculate the dynamic structure factor in warm dense beryllium by means of our molecular dynamics simulations. The results are then compared with those obtained within ...
Warm dense plasma is the matter that exists, roughly, in the range of 10,000 to 10,000,000 Kelvin an...
In warm dense matter (WDM) and dense plasma physics, Density Functional Theory (DFT) has become a st...
The dynamic structure factor of dense two-component plasmas is studied within the method of moments....
[EN] The dynamics of the ion structure in warm dense matter is determined by molecular dynamics simu...
We perform nonadiabatic simulations of warm dense aluminum based on the electron-force field (EFF) v...
International audienceThis work is an improved continuation of a previous attempt to use classical m...
We use a model combining, in a consistent way, orbital-free density functional theory (OF-DFT) and m...
We have calculated the equations of state, the viscosity and self-diffusion coefficients, and electr...
We calculate the static structure factor of dense multi-component plasmas. Large scale ab initio fin...
Warm dense matter (WDM) is an extreme state of matter induced by extreme conditions and characterize...
By performing quantum molecular dynamics (QMD) simulations, we investigate the equation of states, e...
The warm dense matter regime (WDM), defined by temperatures of a few electron volts and densities co...
Warm dense matter (WDM) is a high energy phase between solids and plasmas, with characteristics of b...
The microscopic properties of hot and dense plasmas stays a field essentially studied thanks to clas...
We investigate the microscopic structure of strongly coupled ions in warm dense matter using ab init...
Warm dense plasma is the matter that exists, roughly, in the range of 10,000 to 10,000,000 Kelvin an...
In warm dense matter (WDM) and dense plasma physics, Density Functional Theory (DFT) has become a st...
The dynamic structure factor of dense two-component plasmas is studied within the method of moments....
[EN] The dynamics of the ion structure in warm dense matter is determined by molecular dynamics simu...
We perform nonadiabatic simulations of warm dense aluminum based on the electron-force field (EFF) v...
International audienceThis work is an improved continuation of a previous attempt to use classical m...
We use a model combining, in a consistent way, orbital-free density functional theory (OF-DFT) and m...
We have calculated the equations of state, the viscosity and self-diffusion coefficients, and electr...
We calculate the static structure factor of dense multi-component plasmas. Large scale ab initio fin...
Warm dense matter (WDM) is an extreme state of matter induced by extreme conditions and characterize...
By performing quantum molecular dynamics (QMD) simulations, we investigate the equation of states, e...
The warm dense matter regime (WDM), defined by temperatures of a few electron volts and densities co...
Warm dense matter (WDM) is a high energy phase between solids and plasmas, with characteristics of b...
The microscopic properties of hot and dense plasmas stays a field essentially studied thanks to clas...
We investigate the microscopic structure of strongly coupled ions in warm dense matter using ab init...
Warm dense plasma is the matter that exists, roughly, in the range of 10,000 to 10,000,000 Kelvin an...
In warm dense matter (WDM) and dense plasma physics, Density Functional Theory (DFT) has become a st...
The dynamic structure factor of dense two-component plasmas is studied within the method of moments....