Liquid metals and plasmas as nucleus-electron mixtures
- 10 June 1985
- journal article
- Published by IOP Publishing in Journal of Physics C: Solid State Physics
- Vol. 18 (16) , 3103-3118
- https://doi.org/10.1088/0022-3719/18/16/008
Abstract
Liquid metals and plasmas are treated as binary mixtures of nuclei and electrons. The thermodynamic potential for the inhomogeneous system caused by fixing one of the nuclei in the mixture is constructed by associating it with a non-interacting ion-electron mixture as a reference system to describe this nucleus-electron mixture. With the use of the hypernetted chain (HNC) approximation, the Kohn-Sham-Mermin formalism based on this leads to a set of integral equations for the correlation functions: this set of integral equations also determines the average nuclear charge of the ion, the electron-ion potential and the electronic bound energy levels in a self-consistent manner, and thus becomes identical to the HNC equation for the ion-electron mixture. The electron-ion direct correlation function determined by these equations is shown to be equivalent to a pseudopotential introduced by Dagens et al. (1975) to take account of the non-linear effects. The conditions for the validity of the various conventional plasma theories, including the problem of estimating the average ionisation, are discussed in view of the present theory.Keywords
This publication has 24 references indexed in Scilit:
- Pair Correlation Functions in Liquid Metallic HydrogenProgress of Theoretical Physics, 1984
- The direct correlation function of inhomogeneous quantum liquidsJournal of Physics C: Solid State Physics, 1984
- Static Density Response Function of a Degenerate Electron Gas Calculated by Quantal Hyper-Netted Chain EquationProgress of Theoretical Physics, 1979
- Radial Distribution Functions and Bound Electronic Energy Levels in Hydrogen PlasmasProgress of Theoretical Physics, 1978
- Nonlocal Exchange-Correlation Potential for Inhomogeneous Electron Gas and Quantum FluidsProgress of Theoretical Physics, 1978
- Derivation of Quantal Hyper-Netted Chain Equation from the Kohn-Sham TheoryProgress of Theoretical Physics, 1978
- Space-Time Correlation Functions in Quantal and Classical Binary Mixtures. II: Liquid Metals as Coupled Electron-Ion SystemsProgress of Theoretical Physics, 1976
- Charge densities and interionic potentials in simple metals: Nonlinear effects. IIPhysical Review B, 1975
- A Quantum Mechanical Calculation of the Radial Distrbution Function for a PlasmaAustralian Journal of Physics, 1968
- Quantum Statistical Theory of Plasmas and Liquid MetalsThe Journal of Chemical Physics, 1958