When applied to classical plasmas which are neutralized by a uniform background, the well known Debye Hückel theory is only valid in the weak coupling limit. The main reason for this limitation is that the mean field approximation, upon which the Debye Hückel theory is based, neglects correlations between ions of the screening cloud. Here we show how it is possible to take into account the correlation contributions to the internal energy by properly modifying the formula which determines the internal energy as a function of the mean field. The internal energy we obtain correctly exhibits the two asymptotic behaviours in the weak and strong coupling limits. Moreover, at strong coupling, we get the well known linear law for the internal energ...
Recently, we developed the perturbative hypernetted-chain (PHNC) integral equation which can predict...
The formalism described in the first paper in this series is hereafter specialized to a thorough inv...
We present an approach to the equation of state of fully ionized plasmas with any coupling strength....
When applied to classical plasmas which are neutralized by a uniform background, the well known Deby...
International audienceWe present a generalization of the Debye–Hückel free-energy-density functional...
International audienceWe describe a new semi-phenomenological approach to estimate the internal ener...
We developed a model for the equation of state of fully ionized plasmas which we apply to hydrogen. ...
A new simple yet accurate analytical estimate for the internal energy of the classical onecomponent-...
In plasmas, Debye screening structures the possible correlations between particles. We identify a ph...
It is generally accepted that the equation of state of the Debye and HUckel theory, originally devel...
By eliminating the short range negative divergence of the Debye–Hückel pair distribution function, b...
By eliminating the short range negative divergence of the Debye-Huuckel pair distribution function, ...
The equations of the Debye-Huckel theory, modified to include quantum statistics, are discussed. It ...
An analytic expression is derived for pressure and free energy. The terms are : (a) classical correl...
International audienceIn previous publications [Piron and Blenski, Phys. Rev. E 94, 062128 (2016); B...
Recently, we developed the perturbative hypernetted-chain (PHNC) integral equation which can predict...
The formalism described in the first paper in this series is hereafter specialized to a thorough inv...
We present an approach to the equation of state of fully ionized plasmas with any coupling strength....
When applied to classical plasmas which are neutralized by a uniform background, the well known Deby...
International audienceWe present a generalization of the Debye–Hückel free-energy-density functional...
International audienceWe describe a new semi-phenomenological approach to estimate the internal ener...
We developed a model for the equation of state of fully ionized plasmas which we apply to hydrogen. ...
A new simple yet accurate analytical estimate for the internal energy of the classical onecomponent-...
In plasmas, Debye screening structures the possible correlations between particles. We identify a ph...
It is generally accepted that the equation of state of the Debye and HUckel theory, originally devel...
By eliminating the short range negative divergence of the Debye–Hückel pair distribution function, b...
By eliminating the short range negative divergence of the Debye-Huuckel pair distribution function, ...
The equations of the Debye-Huckel theory, modified to include quantum statistics, are discussed. It ...
An analytic expression is derived for pressure and free energy. The terms are : (a) classical correl...
International audienceIn previous publications [Piron and Blenski, Phys. Rev. E 94, 062128 (2016); B...
Recently, we developed the perturbative hypernetted-chain (PHNC) integral equation which can predict...
The formalism described in the first paper in this series is hereafter specialized to a thorough inv...
We present an approach to the equation of state of fully ionized plasmas with any coupling strength....