Dresden 2020 –
wissenschaftliches Programm
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TT 33: Correlated Electrons: Method Development 1
Mittwoch, 18. März 2020, 09:30–13:00, HSZ 201
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09:30 |
TT 33.1 |
Density functional perturbation theory with DFT+U in the mixed-basis framework — •Rolf Heid
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09:45 |
TT 33.2 |
TRILEX2 approach: towards the calculation of realistic systems — •Evgeny A. Stepanov, Silke Biermann, and Alexander I. Lichtenstein
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10:00 |
TT 33.3 |
Strong-coupling formula for momentum-dependent susceptibilities in dynamical mean-field theory — •Junya Otsuki, Kazuyoshi Yoshimi, Hiroshi Shinaoka, and Yusuke Nomura
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10:15 |
TT 33.4 |
Fixed point and thermodynamic stability of DMFT — •Erik van Loon and Friedrich Krien
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10:30 |
TT 33.5 |
Bandwidth renormalization due to the intersite Coulomb interaction — Yann in 't Veld, •Malte Schüler, Tim Wehling, Mikhail Katsnelson, and Erik van Loon
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10:45 |
TT 33.6 |
Single-boson exchange decomposition of the vertex function — •Friedrich Krien, Angelo Valli, and Massimo Capone
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11:00 |
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15 min. break.
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11:15 |
TT 33.7 |
Symmetric improved estimators for continuous-time quantum Monte Carlo — •Josef Kaufmann, Patrik Gunacker, Alexander Kowalski, Markus Wallerberger, Giorgio Sangiovanni, and Karsten Held
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11:30 |
TT 33.8 |
Novel approach to non-local correlations: dual boson diagrammatic monte carlo — •Matteo Vandelli, Evgeny Stepanov, Angel Rubio, and Alexander Lichtenstein
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11:45 |
TT 33.9 |
Quantum Dynamics Made Fast: Achieving Linear Time-Scaling for Nonequilibrium Green Functions — •Niclas Schlünzen, Jan-Philip Joost, and Michael Bonitz
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12:00 |
TT 33.10 |
Functional renormalization group for a large Moiré unit cell — •Lennart Klebl, Dante Kennes, and Carsten Honerkamp
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12:15 |
TT 33.11 |
Efficient simulation of the Dynamics in Two-Dimensional Quantum Spin Systems with Isometric Tensor Networks — •Sheng-Hsuan Lin and Frank Pollmann
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12:30 |
TT 33.12 |
Orientational order parameters for arbitrary quantum systems* — •Michael te Vrugt and Raphael Wittkowski
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12:45 |
TT 33.13 |
Wavefunctions for macroscopic electron systems — •Peter Fulde
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