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MA: Fachverband Magnetismus

MA 17: Computational Magnetism II

Tuesday, March 19, 2024, 09:30–13:00, EB 202

09:30 MA 17.1 Rational design of RE-free magnets from first principles via Bayesian optimisation — •Fabian Eilers, Stephan Erdmann, Halil Ibrahim Sözen, and Thorsten Klüner
09:45 MA 17.2 Efficient Implementation of the Minimum Mode Following Method for magnetic systems — •Hendrik Schrautzer, Moritz Sallermann, Stefan Heinze, Hannes Jónsson, and Pavel F. Bessarab
10:00 MA 17.3 Mixed valence nature of the Ce 4f state in CeCo5 — •Ruiwen Xie and Hongbin Zhang
10:15 MA 17.4 Is the ground state of Anderson's impurity model a recurrent neural network? — •Jonas B. Rigo and Markus Schmitt
10:30 MA 17.5 High-throughput calculation of magnetic exchange interactions using DFT — •Jan Priessnitz and Dominik Legut
10:45 MA 17.6 Machine learning-based prediction of transfer integrals in undoped cuprates — •Denys Kononenko, Ulrich K. Rößler, Jeroen van den Brink, and Oleg Janson
  11:00 15 min. break
  11:15 MA 17.7 The contribution has been withdrawn.
11:30 MA 17.8 Translationally Invariant Formalism for the Computation of Orbital Magnetization — •Seung-Ju Hong and Cheol-Hwan Park
  11:45 MA 17.9 The contribution has been moved to TT 66.12.
12:00 MA 17.10 Ab-initio study of x-ray circular dichroism in chiral solids: disentangling magnetic and natural cross-sections — •Alberto Marmodoro, Ondrej Sipr, Sergiy Mankovsky, and Hubert Ebert
12:15 MA 17.11 Automating ab initio modeling applied to muon spin rotation and relaxation spectroscopy — •Miki bonacci, Ifeanyi John Onuorah, Roberto De Renzi, Giovanni Pizzi, and Pietro Bonfa’
12:30 MA 17.12 Energy-efficient control of magnetic statesMohammad Badarneh, Grzegorz Kwiatkowski, and •Pavel Bessarab
12:45 MA 17.13 Unravelling local spin-model parameters based on non-collinear magnetic statesBendegúz Nyári and •László Szunyogh
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