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Density-functional approximation for the correlation energy of the inhomogeneous electron gas

Physical review. B, Condensed matter · 1986 · Vol. 33(12) · pp. 8822–8824
John P. Perdew

Abstract

Langreth and Mehl (LM) and co-workers have developed a useful spin-density functional for the correlation energy of an electronic system. Here the LM functional is improved in two ways: (1) The natural separation between exchange and correlation is made, so that the density-gradient expansion of each is recovered in the slowly varying limit. (2) Uniform-gas and inhomogeneity effects beyond the randomphase approximation are built in. Numerical results for atoms, positive ions, and surfaces are close to the exact correlation energies, with major improvements over the original LM approximation for the ions and surfaces.

Advanced Chemical Physics StudiesSurface and Thin Film PhenomenaQuantum and electron transport phenomenaIonLimit (mathematics)PhysicsFermi gasCorrelationLocal-density approximationEnergy (signal processing)Atomic physicsElectronDensity functional theory
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References
Inhomogeneous Electron Gas
Physical review. B, Solid state · 1973 · 816 citations
The exchange-correlation energy of a metallic surface
Solid State Communications · 1975 · 899 citations
Ground State of the Electron Gas by a Stochastic Method
Physical Review Letters · 1980 · 14,143 citations
Self-interaction correction to density-functional approximations for many-electron systems
Physical review. B, Condensed matter · 1981 · 20,560 citations
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