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Regensburg 2022 – wissenschaftliches Programm

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DY: Fachverband Dynamik und Statistische Physik

DY 41: Nonequilibrium Quantum Many-Body Systems (joint session TT/DY)

Donnerstag, 8. September 2022, 15:00–18:30, H22

15:00 DY 41.1 Investigating the non-equilibrium dynamics of two-level systems at low temperature — •Marcel Haas, Mareike Dinger, Lukas Münch, Jan Blickberndt, Andreas Reiser, Andreas Fleischmann, and Christian Enss
15:15 DY 41.2 Photoinduced prethermal order parameter dynamics in the two-dimensional large-N Hubbard-Heisenberg model — •Alexander Osterkorn and Stefan Kehrein
15:30 DY 41.3 Nonequilibrium dynamics in pumped Mott insulators — •Satoshi Ejima, Florian Lange, and Holger Fehske
15:45 DY 41.4 Nonequilibrium non-Markovian steady states in open quantum many-body systems: Persistent oscillations in Heisenberg quantum spin chains — •Regina Finsterhoelzl, Manuel Katzer, and Alexander Carmele
  16:00 DY 41.5 The contribution has been withdrawn.
16:15 DY 41.6 Entanglement phase transitions in correlated 1D spin chains — •Monalisa Singh Roy, Jonathan Ruhman, Emanuele G. Dalla Torre, and Efrat Shimshoni
16:30 DY 41.7 Feynman-Vernon influence functional approach to quantum transport in interacting nanojunctions: An analytical hierarchical study — •Luca Magazzu and Milena Grifoni
  16:45 15 min. break
17:00 DY 41.8 In-Gap Band Formation in a Periodically Driven Charge Density Wave Insulator — •Alexander Osterkorn, Constantin Meyer, and Salvatore Manmana
  17:15 DY 41.9 The contribution has been withdrawn.
17:30 DY 41.10 Charge transport in hybrid semiconductor-cavity systems: an exact diagonalization study — •Sebastian Stumper and Junichi Okamoto
17:45 DY 41.11 Effect of disorder and interactions in a periodically driven ultracold atomic system — •Arijit Dutta
18:00 DY 41.12 Non-equilibrium optical conductivity for striped states: A time-dependent Gutzwiller analysis for the single-band Hubbard model — •Christian Martens and Götz Seibold
18:15 DY 41.13 Kondo systems with periodically driven dipole transitions — •Michael Turaev and Johann Kroha
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