Understanding Correlated Materials with DMFT
Lecture notes of the Autumn School on Correlated Electrons 2025
- Dieter Vollhardt
Understanding Correlated Materials with Lattice Fermions in Infinite Dimensions
- Robert Jones
Density Functional Theory for the Sceptical
- Eva Pavarini
Dynamical Mean-Field Theory for Materials
- Luca de' Medici
Hund's Metal Physics in the Iron-Based Superconductors
- Tim Wehling
DMFT for Moiré Systems
- Claude Ederer
Effect of Charge Self-Consistency in Calculations for Transition-Metal Oxides
- Jan Tomczak
A Perspective on Screened Coulomb Interactions from the constrained Random Phase Approximation
- Krzysztof Byczuk
Dynamical Mean-Field Theory for Correlated Electrons with Disorder
- Xavier Waintal
Learning Feynman Diagrams with Tensor Trains
- Philipp Werner
QMC for Nonequilibrium Systems
- Erik Koch
Analytic Continuation of Quantum Monte Carlo Data
- Walter Metzner
Functional Renormalization of Strongly Correlated Electrons: DMFT as a Booster Rocket
- Alexander Lichtenstein
Path Integrals and Reference Systems
- Karsten Held
Unconventional Superconductivity in the Dynamical Vertex Approximation
- Thomas Ayral
Dynamical Mean-Field Theory with Quantum Computing
OpenAccess Book
The lecture notes have been published as a book:
Eva Pavarini, Erik Koch, Alexander Lichtenstein, and Dieter Vollhardt (eds.)
Understanding Correlated Materials with DMFT
Modeling and Simulation, Vol. 15
Verlag des Forschungszentrum Jülich, 2025
ISBN 978-3-95806-813-1
Autumn School on Correlated Electrons
Overview of the Schools in the Series