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Density-functional exchange-energy approximation with correct asymptotic behavior

Physical review. A, General physics · 1988 · Vol. 38(6) · pp. 3098–3100
Axel D. Becke

Abstract

Current gradient-corrected density-functional approximations for the exchange energies of atomic and molecular systems fail to reproduce the correct 1/r asymptotic behavior of the exchange-energy density. Here we report a gradient-corrected exchange-energy functional with the proper asymptotic limit. Our functional, containing only one parameter, fits the exact Hartree-Fock exchange energies of a wide variety of atomic systems with remarkable accuracy, surpassing the performance of previous functionals containing two parameters or more.

Advanced Chemical Physics StudiesQuantum and electron transport phenomenaMolecular Junctions and NanostructuresHybrid functionalLimit (mathematics)PhysicsDensity functional theoryEnergy (signal processing)Energy functionalVariety (cybernetics)Local-density approximationStatistical physicsExchange interaction
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