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Erlangen 2022 – wissenschaftliches Programm

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Q: Fachverband Quantenoptik und Photonik

Q 26: Quantum Gases (Fermions)

Mittwoch, 16. März 2022, 10:30–12:30, Q-H10

10:30 Q 26.1 Observation of Cooper Pairs in a Mesoscopic 2D Fermi Gas — •Marvin Holten, Luca Bayha, Keerthan Subramanian, Sandra Brandstetter, Carl Heintze, Philipp Lunt, Philipp Preiss, and Selim Jochim
10:45 Q 26.2 Towards a New Experiment for Programmable Quantum Simulation using Li-6 Fermions — •Tobias Hammel, Maximilian Kaiser, Micha Bunjes, Philipp Preiss, Matthias Weidemüller, and Selim Jochim
11:00 Q 26.3 Mesoscopic Fermion systems in rotating traps — •Philipp Lunt, Paul Hill, Diana Körner, Johannes Reiter, Selim Jochim, and Philipp Preiss
11:15 Q 26.4 Realising the Symmetry-Protected Haldane Phase in Fermi-Hubbard Ladders — •Dominik Bourgund, Sarah Hirthe, Pimonpan Sompet, Thomas Chalopin, Joannis Koepsell, Petar Bojovic, Guillaume Salomon, Julian Bibo, Ruben Verresen, Frank Pollmann, Christian Groß, Immanuel Bloch, and Timon A. Hilker
11:30 Q 26.5 Emergence of a quantum phase transition in a few-fermion system — •Keerthan Subramanian, Luca Bayha, Marvin Holten, Ralf Klemt, Johannes Bjerlin, Stephanie Riemann, Georg Bruun, Philipp Preiss, and Selim Jochim
11:45 Q 26.6 Matterwave microscopy of 2D few-fermion systems — •Sandra Brandstetter, Keerthan Subramanian, Carl Heintze, Marvin Holten, Philipp Preiss, and Selim Jochim
  12:00 Q 26.7 The contribution has been withdrawn.
12:15 Q 26.8 Efficient Diagonalization Methods for Mesoscopic Fermi Systems — •Paul Hill
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