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- W3104556156 endingPage "041004" @default.
- W3104556156 startingPage "041004" @default.
- W3104556156 abstract "While key effects of the many-body problem---such as Kondo and Mott physics---can be understood in terms of on-site correlations, non-local fluctuations of charge, spin, and pairing amplitudes are at the heart of the most fascinating and unresolved phenomena in condensed matter physics. Here, we review recent progress in diagrammatic extensions to dynamical mean-field theory for ab initio materials calculations. We first recapitulate the quantum field theoretical background behind the two-particle vertex. Next we discuss latest algorithmic advances in quantum Monte Carlo simulations for calculating such two-particle quantities using worm sampling and vertex asymptotics, before giving an introduction to the ab initio dynamical vertex approximation (AbinitioD$Gamma$A). Finally, we highlight the potential of AbinitioD$Gamma$A by detailing results for the prototypical correlated metal SrVO$_3$." @default.
- W3104556156 created "2020-11-23" @default.
- W3104556156 creator A5009832532 @default.
- W3104556156 creator A5009971174 @default.
- W3104556156 creator A5026576829 @default.
- W3104556156 creator A5040558573 @default.
- W3104556156 creator A5043378891 @default.
- W3104556156 creator A5066987080 @default.
- W3104556156 creator A5076522489 @default.
- W3104556156 date "2018-04-15" @default.
- W3104556156 modified "2023-10-16" @default.
- W3104556156 title "Towards ab initio Calculations with the Dynamical Vertex Approximation" @default.
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