Understanding Correlated Materials with DMFT

Lecture notes of the Autumn School on Correlated Electrons 2025
  1. Dieter Vollhardt
    Understanding Correlated Materials with Lattice Fermions in Infinite Dimensions
  2. Robert Jones
    Density Functional Theory for the Sceptical
  3. Eva Pavarini
    Dynamical Mean-Field Theory for Materials
  4. Luca de' Medici
    Hund's Metal Physics in the Iron-Based Superconductors
  5. Tim Wehling
    DMFT for Moiré Systems
  6. Claude Ederer
    Effect of Charge Self-Consistency in Calculations for Transition-Metal Oxides
  7. Jan Tomczak
    A Perspective on Screened Coulomb Interactions from the constrained Random Phase Approximation
  8. Krzysztof Byczuk
    Dynamical Mean-Field Theory for Correlated Electrons with Disorder
  9. Xavier Waintal
    Learning Feynman Diagrams with Tensor Trains
  10. Philipp Werner
    QMC for Nonequilibrium Systems
  11. Erik Koch
    Analytic Continuation of Quantum Monte Carlo Data
  12. Walter Metzner
    Functional Renormalization of Strongly Correlated Electrons: DMFT as a Booster Rocket
  13. Alexander Lichtenstein
    Path Integrals and Reference Systems
  14. Karsten Held
    Unconventional Superconductivity in the Dynamical Vertex Approximation
  15. Thomas Ayral
    Dynamical Mean-Field Theory with Quantum Computing

OpenAccess Book

book cover 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