The equations of state (EoS) and other thermodynamic properties of plasmas of the light elements H, He, and Li, are calculated using inverted fugacity expansions. Fugacity expansions are known as an alternative to density expansions but show often an inferior convergence. If, however, the inversion can be solved, the fugacity representations may be very efficient. In particular, the contributions of deeply bound states are included in the fugacity expansion in a very effective way. The mathematical problems on nonlinearity connected with the inversion of fugacities to densities are reduced to solvable algebraic problems. The inversion of fugacities to densities is solved separately for two density regions: (i) In the low density, non-degene...
A knowledge of the equation of state (EOS) of matter is necessary to describe the dependence of its ...
Calculation of equation of state in stellar interiors becomes difficult as contained gas deviates fr...
This paper describes methods for calculating the equation of state of partially-ionized dense plasma...
The equations of state (EoS) and other thermodynamic properties of plasmas of the light elements H, ...
The equation of state (EOS) for plasmas of the two lightest elements H and He, and mixtures as typic...
We developed a model for the equation of state of fully ionized plasmas which we apply to hydrogen. ...
Stellar modelling challenges the physicist to provide accurate data for a lot of processes in a wide...
We use a two-fluid model combining the quantum Green's function technique for the electrons and a cl...
Abstract A detailed independent derivation of the hydrogen weakly nonideal plasma equation of state ...
We study hydrogen in the Saha regime, within the physical picture in terms of a quantum proton-elect...
International audienceDensity effects in ionized matter require particular attention since they modi...
The thermodynamic properties and transport coefficients of non-ideal, high-density hydrogen plasma ...
Ab initio molecular dynamics calculations are adapted to treat dense plasmas for temperatures exceed...
The charged environment within a dense plasma leads to the phenomenon of ionization-potential depres...
We present an approach to the equation of state of fully ionized plasmas with any coupling strength....
A knowledge of the equation of state (EOS) of matter is necessary to describe the dependence of its ...
Calculation of equation of state in stellar interiors becomes difficult as contained gas deviates fr...
This paper describes methods for calculating the equation of state of partially-ionized dense plasma...
The equations of state (EoS) and other thermodynamic properties of plasmas of the light elements H, ...
The equation of state (EOS) for plasmas of the two lightest elements H and He, and mixtures as typic...
We developed a model for the equation of state of fully ionized plasmas which we apply to hydrogen. ...
Stellar modelling challenges the physicist to provide accurate data for a lot of processes in a wide...
We use a two-fluid model combining the quantum Green's function technique for the electrons and a cl...
Abstract A detailed independent derivation of the hydrogen weakly nonideal plasma equation of state ...
We study hydrogen in the Saha regime, within the physical picture in terms of a quantum proton-elect...
International audienceDensity effects in ionized matter require particular attention since they modi...
The thermodynamic properties and transport coefficients of non-ideal, high-density hydrogen plasma ...
Ab initio molecular dynamics calculations are adapted to treat dense plasmas for temperatures exceed...
The charged environment within a dense plasma leads to the phenomenon of ionization-potential depres...
We present an approach to the equation of state of fully ionized plasmas with any coupling strength....
A knowledge of the equation of state (EOS) of matter is necessary to describe the dependence of its ...
Calculation of equation of state in stellar interiors becomes difficult as contained gas deviates fr...
This paper describes methods for calculating the equation of state of partially-ionized dense plasma...