A classical kinetic theory is used to study the electrical and thermal conductivities of a fully ionized hydrogen plasma for a wide range of values of temperature and density. Quantum effects are taken into account by effective potentials. It is shown that the kinetic theory results are in agreement with those of molecular dynamics which are available for strongly coupled systems. Analytical formulas valid in the weak coupling domain are given and odd properties of the model potential which accounts for quantum symmetry effects are discussed.Dans le cadre d'une théorie cinétique classique on fait une étude des conductivités électrique et thermique d'un plasma d'hydrogène complètement ionisé valable dans un large domaine de températures et d...
The partition function of a hydrogen plasma is derived, partly classically and partly quantum-mechan...
We investigate subpicosecond dynamics of warm dense hydrogen at the XUV free-electron laser facility...
In this work, we investigate matter under extreme conditions, the systematic study of which has only...
A classical kinetic theory is used to study the electrical and thermal conductivities of a fully ion...
A kinetic theory is presented for the thermal conductivity of a strongly coupled, fully ionized hydr...
The thermal conductivity of a weakly coupled electron gas is obtained within the Wigner function for...
The thermodynamic properties and transport coefficients of non-ideal, high-density hydrogen plasma ...
Ionization of dense hydrogen plasmas is studied from a chemical picture. It is based on a priori exi...
We developed a model for the equation of state of fully ionized plasmas which we apply to hydrogen. ...
A semi-classical (SC) kinetic theory and its purely quantum-mechanical analog are used to calculate ...
International audienceThe low-density limit of the electrical conductivity σ (n ,T ) of hydrogen as ...
The partition function of a hydrogen plasma is derived, partly classically and partly quantum-mechan...
Ionization of dense hydrogen plasmas is studied from a chemical picture. It is based on a priori exi...
We investigate subpicosecond dynamics of warm dense hydrogen at the XUV free-electron laser facility...
We study hydrogen in the Saha regime, within the physical picture in terms of a quantum proton-elect...
The partition function of a hydrogen plasma is derived, partly classically and partly quantum-mechan...
We investigate subpicosecond dynamics of warm dense hydrogen at the XUV free-electron laser facility...
In this work, we investigate matter under extreme conditions, the systematic study of which has only...
A classical kinetic theory is used to study the electrical and thermal conductivities of a fully ion...
A kinetic theory is presented for the thermal conductivity of a strongly coupled, fully ionized hydr...
The thermal conductivity of a weakly coupled electron gas is obtained within the Wigner function for...
The thermodynamic properties and transport coefficients of non-ideal, high-density hydrogen plasma ...
Ionization of dense hydrogen plasmas is studied from a chemical picture. It is based on a priori exi...
We developed a model for the equation of state of fully ionized plasmas which we apply to hydrogen. ...
A semi-classical (SC) kinetic theory and its purely quantum-mechanical analog are used to calculate ...
International audienceThe low-density limit of the electrical conductivity σ (n ,T ) of hydrogen as ...
The partition function of a hydrogen plasma is derived, partly classically and partly quantum-mechan...
Ionization of dense hydrogen plasmas is studied from a chemical picture. It is based on a priori exi...
We investigate subpicosecond dynamics of warm dense hydrogen at the XUV free-electron laser facility...
We study hydrogen in the Saha regime, within the physical picture in terms of a quantum proton-elect...
The partition function of a hydrogen plasma is derived, partly classically and partly quantum-mechan...
We investigate subpicosecond dynamics of warm dense hydrogen at the XUV free-electron laser facility...
In this work, we investigate matter under extreme conditions, the systematic study of which has only...