Strongly Constrained and Appropriately Normed Semilocal Density Functional
Jianwei Sun, Adrienn Ruzsinszky, John P. Perdew
Physical Review Letters · 2015 · 3,715 citations
Abstract
The ground-state energy, electron density, and related properties of ordinary matter can be computed efficiently when the exchange-correlation energy as a functional of the density is approximated semilocally. We propose the first meta-generalized-gradient approximation (meta-GGA) that is fully constrained, obeying all 17 known exact constraints that a meta-GGA can. It is also exact or nearly exact for a set of "appropriate norms," including rare-gas atoms and nonbonded interactions. This strongly constrained and appropriately normed meta-GGA achieves remarkable accuracy for systems where the exact exchange-correlation hole is localized near its electron, and especially for lattice constants and weak interactions.
Cite this paper
Sun, J., Ruzsinszky, A., & Perdew, J. P. (2015). Strongly constrained and appropriately normed semilocal density functional. Physical Review Letters, 115(3), 036402. https://doi.org/10.1103/physrevlett.115.036402
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