STRONGLY CORRELATED ELECTRON SYSTEMS
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Representative Talks

Some recent talks:

  • Beyond DFT: DMFT and its extensions
    Novel phases, superconductivity, and emergent electronic properties of quantum materials
    Les Housches School of Physics, 2025

  • Understanding orbital physics in correlated systems: insights from the DFT+DMFT approach
    DyProSo2025, 40th Symposium on Dynamical Properties of Solids
    Institute of Physics, Prague, 2025

  • Kugel-Khomskii Materials - Flipping the order of transitions
    Workshop on Orbital Physics in Correlated Materials: New Challenges and Perspectives (OPCM25)
    MPI CPfS, Dresden, 2025

  • Orbital Ordering: Finding true Kugel-Khomskii Materials
    DMFT-QE Online Symposium
    Flatiron Institute, Simons Fundation, 2024

  • Finding true Kugel-Khomskii materials
    Spin-Orbit Entangled Quantum Magnetism
    ESI Center, Vienna, 2024

  • Orbital Physics in Strongly Correlated Materials
    Spin matters!
    Lorentz Center, Leiden, 2023

  • Multi-orbital nature of doped Sr2IrO4
    New frontiers in emergent materials
    Natal, International Institute of Physics, 2023

  • LaVO3: A true Kugel-Khomskii system
    New Horizons in Quantum Correlated Materials
    ICTP-SAIFR, Sao Paulo, 2022

    Here lectures I gave for the Autumn school on Correlated Electrons:

  • Dynamical Mean-Field Theory for Materials
  • Orbital Ordering in Materials
  • Orbital Ordering in Materials
  • DMFT for Linear Response Functions
  • Dynamical Mean-Field Theory for Materials
  • LDA+DMFT: Linear Response Functions
  • Dynamical Mean-Field Theory for Materials
  • LDA+DMFT: Multi-Orbital Hubbard Models
  • Mott transition: DFT+U vs. DFT+DMFT
  • Orbital Ordering
  • Magnetism in Correlated Matter
  • Linear Response Functions
  • Magnetism: Models and Mechanisms
  • Crystal-field Theory, Tight-binding Method, and Jahn-Teller Effect
  • The LDA+DMFT Approach

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