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Keywords = GW+DMFT

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33 pages, 5867 KiB  
Review
Recent Progress in First-Principles Methods for Computing the Electronic Structure of Correlated Materials
by Fredrik Nilsson and Ferdi Aryasetiawan
Computation 2018, 6(1), 26; https://doi.org/10.3390/computation6010026 - 19 Mar 2018
Cited by 16 | Viewed by 7217
Abstract
Substantial progress has been achieved in the last couple of decades in computing the electronic structure of correlated materials from first principles. This progress has been driven by parallel development in theory and numerical algorithms. Theoretical development in combining ab initio approaches and [...] Read more.
Substantial progress has been achieved in the last couple of decades in computing the electronic structure of correlated materials from first principles. This progress has been driven by parallel development in theory and numerical algorithms. Theoretical development in combining ab initio approaches and many-body methods is particularly promising. A crucial role is also played by a systematic method for deriving a low-energy model, which bridges the gap between real and model systems. In this article, an overview is given tracing the development from the LDA+U to the latest progress in combining the G W method and (extended) dynamical mean-field theory ( G W +EDMFT). The emphasis is on conceptual and theoretical aspects rather than technical ones. Full article
(This article belongs to the Special Issue In Memory of Walter Kohn—Advances in Density Functional Theory)
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