International audienceWe present a study of statistical static and dynamic properties of local electric fields in moderately coupled hydrogen plasmas. In this regime new molecular dynamics simulations of neutral hydrogen, protons and electrons are now well controlled. They provide new insight into the statistical properties of the microfield. Taking advantage of such careful MD simulations this work focuses on a new analysis of concepts for the high and low frequency components introduced in the past in several seminal works
A general formalism is presented for the High Frequency and the Low Frequency parts of the electric ...
We investigate the dynamics of a nanosecond-pulsed microdischarge in high pressure hydro-gen gas, sp...
A physical discussion of the validity conditions of the different approximations allows to compare t...
4 pages, 4 figures, submitted to Phys. Rev. LettThe aim of this work is the investigation of the sta...
We use molecular dynamics computer simulations to investigate the fluctuations of the electric micro...
Abstract. We use molecular dynamics computer simulations to investigate the fluctuations of the elec...
The electric microfield distribution at charged particles is studied for two-component electron-ion ...
Density functional molecular dynamics method is applied to hydrogen plasma in the domain of liquid m...
International audienceThe low-density limit of the electrical conductivity σ (n ,T ) of hydrogen as ...
Hydrogen line shapes broadened by Stark effects are calculated for a dense hydrogen plasma created b...
International audienceA study of hydrogen lines emitted in dense and low temperature plasmas is pres...
As a method of quantum simulation for large systems with surfaces and inhomogenieties, the density f...
Within the framework of finite temperature DFT, we present and assess a novel multiscale re-cursion ...
A microfield simulation including the effect of ion dynamics is applied to the calculation of hydrog...
Previously unaccessible plasma states of matter can be produced by irradiation with powerful lasers....
A general formalism is presented for the High Frequency and the Low Frequency parts of the electric ...
We investigate the dynamics of a nanosecond-pulsed microdischarge in high pressure hydro-gen gas, sp...
A physical discussion of the validity conditions of the different approximations allows to compare t...
4 pages, 4 figures, submitted to Phys. Rev. LettThe aim of this work is the investigation of the sta...
We use molecular dynamics computer simulations to investigate the fluctuations of the electric micro...
Abstract. We use molecular dynamics computer simulations to investigate the fluctuations of the elec...
The electric microfield distribution at charged particles is studied for two-component electron-ion ...
Density functional molecular dynamics method is applied to hydrogen plasma in the domain of liquid m...
International audienceThe low-density limit of the electrical conductivity σ (n ,T ) of hydrogen as ...
Hydrogen line shapes broadened by Stark effects are calculated for a dense hydrogen plasma created b...
International audienceA study of hydrogen lines emitted in dense and low temperature plasmas is pres...
As a method of quantum simulation for large systems with surfaces and inhomogenieties, the density f...
Within the framework of finite temperature DFT, we present and assess a novel multiscale re-cursion ...
A microfield simulation including the effect of ion dynamics is applied to the calculation of hydrog...
Previously unaccessible plasma states of matter can be produced by irradiation with powerful lasers....
A general formalism is presented for the High Frequency and the Low Frequency parts of the electric ...
We investigate the dynamics of a nanosecond-pulsed microdischarge in high pressure hydro-gen gas, sp...
A physical discussion of the validity conditions of the different approximations allows to compare t...