Density functional theory for strongly-correlated bosonic and fermionic ultracold dipolar and ionic gases

We introduce a density functional formalism to study the ground-state properties of strongly-correlated dipolar and ionic ultracold bosonic and fermionic gases, based on the self-consistent combination of the weak and the strong coupling limits. Contrary to conventional density functional approaches...

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Veröffentlicht in:arXiv.org 2015-02
Hauptverfasser: Malet, F, Mirtschink, A, Mendl, C B, Bjerlin, J, Karabulut, E O, Reimann, S M, Gori-Giorgi, Paola
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Sprache:eng
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Zusammenfassung:We introduce a density functional formalism to study the ground-state properties of strongly-correlated dipolar and ionic ultracold bosonic and fermionic gases, based on the self-consistent combination of the weak and the strong coupling limits. Contrary to conventional density functional approaches, our formalism does not require a previous calculation of the interacting homogeneous gas, and it is thus very suitable to treat systems with tunable long-range interactions. Due to its asymptotic exactness in the regime of strong correlation, the formalism works for systems in which standard mean-field theories fail.
ISSN:2331-8422
DOI:10.48550/arxiv.1502.01469