We present a semi-analytical free-energy model aimed at characterizing the thermodynamic properties of dense fluid helium, from the low-density atomic phase to the high-density fully ionized regime. The model is based on a free-energy minimization method and includes various different contributions representative of the correlations between atomic and ionic species and electrons. This model allows the computation of the thermodynamic properties of dense helium over an extended range of density and temperature and leads to the computation of the phase diagram of dense fluid helium, with its various temperature and pressure ionization contours. One of the predictions of the model is that pressure ionization occurs abruptly at $\\rho \\simgr 1...
Properties of helium under high pressure are of great importance for a variety of astrophysical obje...
International audienceIn a recent paper, we derived a new equation of state (EOS) for dense hydrogen...
International audienceIn a recent paper, we derived a new equation of state (EOS) for dense hydrogen...
We present a semi-analytical free-energy model aimed at characterizing the thermodynamic properties ...
We present a semi-analytical free-energy model aimed at characterizing the thermodynamic properties ...
We present a semi-analytical free-energy model aimed at characterizing the thermodynamic properties ...
We present a semi-analytical free-energy model aimed at characterizing the thermodynamic properties ...
We present a semi-analytical free-energy model aimed at characterizing the thermodynamic properties ...
The free energy of a hydrogen-helium fluid mixture is evaluated for the temperatures and densities a...
The free energy of a hydrogen-helium fluid mixture is evaluated for the temperatures and densities a...
The free energy of a hydrogen-helium fluid mixture is evaluated for the temperatures and densities a...
We study the thermophysical properties of dense helium plasmas by using quantum molecular dynamics a...
We study the thermophysical properties of dense helium plasmas by using quantum molecular dynamics a...
We have performed quantum molecular dynamics simulations for dense helium to study the nonmetal-to-m...
Equilibrium properties of hydrogen\u2010helium mixtures under thermodynamic conditions found in the ...
Properties of helium under high pressure are of great importance for a variety of astrophysical obje...
International audienceIn a recent paper, we derived a new equation of state (EOS) for dense hydrogen...
International audienceIn a recent paper, we derived a new equation of state (EOS) for dense hydrogen...
We present a semi-analytical free-energy model aimed at characterizing the thermodynamic properties ...
We present a semi-analytical free-energy model aimed at characterizing the thermodynamic properties ...
We present a semi-analytical free-energy model aimed at characterizing the thermodynamic properties ...
We present a semi-analytical free-energy model aimed at characterizing the thermodynamic properties ...
We present a semi-analytical free-energy model aimed at characterizing the thermodynamic properties ...
The free energy of a hydrogen-helium fluid mixture is evaluated for the temperatures and densities a...
The free energy of a hydrogen-helium fluid mixture is evaluated for the temperatures and densities a...
The free energy of a hydrogen-helium fluid mixture is evaluated for the temperatures and densities a...
We study the thermophysical properties of dense helium plasmas by using quantum molecular dynamics a...
We study the thermophysical properties of dense helium plasmas by using quantum molecular dynamics a...
We have performed quantum molecular dynamics simulations for dense helium to study the nonmetal-to-m...
Equilibrium properties of hydrogen\u2010helium mixtures under thermodynamic conditions found in the ...
Properties of helium under high pressure are of great importance for a variety of astrophysical obje...
International audienceIn a recent paper, we derived a new equation of state (EOS) for dense hydrogen...
International audienceIn a recent paper, we derived a new equation of state (EOS) for dense hydrogen...