On the basis of a quantum-statistical approach to the electrical conductivity of nonideal plasmas we derive analytical results in the classical low-density regime, in the degenerate Born limit, and for the contribution of the Debye-Onsager relaxation effect. These explicit results are used to construct an improved interpolation formula of the electrical conductivity valid in a wide range of temperature and density which allows to compare with available experimental data of nonideal plasmas
Based on quantum statistical theory a kinetic equation is presented which is valid for dense plasmas...
The influence of an external electric field on the current in charged systems is investigated. The r...
The dielectric screening function epsilon(kappa, omega) of the fluid of charged bosons at zero tempe...
The fruitfulness of the method of a non-equilibrium statistical operator (NSO) and generalized linea...
International audienceThe low-density limit of the electrical conductivity σ (n ,T ) of hydrogen as ...
The linear density response formalism is used to analytically obtain an effective pairwise interacti...
Activities in magnetohydrodynamic power, high enthalpy wind tunnels and arc-jet engines require info...
New data are presented which provide direct experimental confirmation of the validity of a physical ...
The electric conductivity of a non-degenerate fully ionized plasma is calculated on basis of a quant...
We use the exponential parametrization of the nonextensive distribution to calculate the dielectric ...
the quantum calculation of the d.c. electrical conductivity for an electron system is reconsidered b...
An interpolation formula for the coefficient of thermal conductivity valid in the entire region of t...
The electrical and thermal conductivity are determined in linear response theory taking into account...
The formalism described in the first paper in this series is hereafter specialized to a thorough inv...
Interrelations between the problems of electrical conductivity of a completely ionized plasma and th...
Based on quantum statistical theory a kinetic equation is presented which is valid for dense plasmas...
The influence of an external electric field on the current in charged systems is investigated. The r...
The dielectric screening function epsilon(kappa, omega) of the fluid of charged bosons at zero tempe...
The fruitfulness of the method of a non-equilibrium statistical operator (NSO) and generalized linea...
International audienceThe low-density limit of the electrical conductivity σ (n ,T ) of hydrogen as ...
The linear density response formalism is used to analytically obtain an effective pairwise interacti...
Activities in magnetohydrodynamic power, high enthalpy wind tunnels and arc-jet engines require info...
New data are presented which provide direct experimental confirmation of the validity of a physical ...
The electric conductivity of a non-degenerate fully ionized plasma is calculated on basis of a quant...
We use the exponential parametrization of the nonextensive distribution to calculate the dielectric ...
the quantum calculation of the d.c. electrical conductivity for an electron system is reconsidered b...
An interpolation formula for the coefficient of thermal conductivity valid in the entire region of t...
The electrical and thermal conductivity are determined in linear response theory taking into account...
The formalism described in the first paper in this series is hereafter specialized to a thorough inv...
Interrelations between the problems of electrical conductivity of a completely ionized plasma and th...
Based on quantum statistical theory a kinetic equation is presented which is valid for dense plasmas...
The influence of an external electric field on the current in charged systems is investigated. The r...
The dielectric screening function epsilon(kappa, omega) of the fluid of charged bosons at zero tempe...