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Fermionic Statistics in the Strongly Correlated Limit of Density Functional Theory
Author(s) -
Juri Grossi,
Derk P. Kooi,
Klaas J. H. Giesbertz,
Michael Seidl,
Aron J. Cohen,
Paula MoriSánchez,
Paola GoriGiorgi
Publication year - 2017
Publication title -
journal of chemical theory and computation
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.001
H-Index - 185
eISSN - 1549-9626
pISSN - 1549-9618
DOI - 10.1021/acs.jctc.7b00998
Subject(s) - limit (mathematics) , adiabatic process , statistical physics , coupling (piping) , physics , density functional theory , dimension (graph theory) , simple (philosophy) , connection (principal bundle) , work (physics) , electron , quantum mechanics , statistics , mathematics , mathematical analysis , materials science , combinatorics , philosophy , geometry , epistemology , metallurgy
Exact pieces of information on the adiabatic connection integrand, W λ [ρ], which allows evaluation of the exchange-correlation energy of Kohn-Sham density functional theory, can be extracted from the leading terms in the strong coupling limit (λ → ∞, where λ is the strength of the electron-electron interaction). In this work, we first compare the theoretical prediction for the two leading terms in the strong coupling limit with data obtained via numerical implementation of the exact Levy functional in the simple case of two electrons confined in one dimension, confirming the asymptotic exactness of these two terms. We then carry out a first study on the incorporation of the Fermionic statistics at large coupling λ, both numerical and theoretical, confirming that spin effects enter at orders ∼e -√λ .

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