% IMPORTANT: The following is UTF-8 encoded. This means that in the presence % of non-ASCII characters, it will not work with BibTeX 0.99 or older. % Instead, you should use an up-to-date BibTeX implementation like “bibtex8” or % “biber”. @PROCEEDINGS{Pavarini:909714, author = {Pavarini, Eva and Koch, Erik and Lichtenstein, Alexander and Vollhardt, Dieter}, title = {{D}ynamical {M}ean-{F}ield {T}heory of {C}orrelated {E}lectrons}, volume = {12}, address = {Jülich}, publisher = {Forschungszentrum Jülich GmbH Zentralbibliothek, Verlag}, reportid = {FZJ-2022-03362}, isbn = {978-3-95806-619-9}, series = {Modeling and Simulation}, year = {2022}, abstract = {1. Dieter Vollhardt: Why Calculate in Infinite Dimensions? 2. Giovanni Vignale: Fermi Liquids, 3. Jan von Delft: The Physics of Quantum Impurity Models, 4. Cedric Weber: Machine Learning as a Solver for DMFT, 5. Philipp Werner: Quantum Monte Carlo Impurity Solvers, 6. Erik Koch: Analytic Continuation of Quantum Monte Carlo Data, 7. Alexander Lichtenstein: LDA+DMFT for Strongly Correlated Materials, 8. Eva Pavarini: DMFT for Linear Response Functions, 9.Frank Lechermann: DFT+DMFT for Oxide Heterostructures, 10. Michael Potthoff: Dynamical Mean-Field Theory for Correlated Topological Phases, 11. Karsten Held: Beyond DMFT: Spin Fluctuations, Pseudogaps and Superconductivity, 12. Ferdi Aryasetiawan: The GW+EDMFT Method, 13. Martin Eckstein: DMFT and GW+DMFT for Systems out of Equilibrium}, month = {Oct}, date = {2022-10-04}, organization = {Autumn School on Correlated Electrons, Jülich (Germany), 4 Oct 2022 - 7 Oct 2022}, cin = {IAS-3 / JSC}, cid = {I:(DE-Juel1)IAS-3-20090406 / I:(DE-Juel1)JSC-20090406}, pnm = {5111 - Domain-Specific Simulation $\&$ Data Life Cycle Labs (SDLs) and Research Groups (POF4-511) / 5215 - Towards Quantum and Neuromorphic Computing Functionalities (POF4-521)}, pid = {G:(DE-HGF)POF4-5111 / G:(DE-HGF)POF4-5215}, typ = {PUB:(DE-HGF)3 / PUB:(DE-HGF)26}, url = {https://juser.fz-juelich.de/record/909714}, }