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10:30 |
Q 19.1 |
Interacting ultracold bosons in optical lattices: Scattering and decoherence — •Hannah Venzl, Stefan Hunn, Scott Sanders, Tobias Zech, Lewin Stein, Florian Mintert, Moritz Hiller, and Andreas Buchleitner
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11:00 |
Q 19.2 |
Modulation of polariton condensates with acoustic periodic potentials — •Edgar Cerda, Dmitryi Krizhanovskii, Klaus Biermann, Michiel Wouters, Rudolf Hey, Paulo Santos, and Maurice Skolnick
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11:15 |
Q 19.3 |
A Superlattice-Based Quantum Simulator for Relativistic Fermionic Theories — •Leonardo Mazza, Alejandro Bermudez, Nathan Goldman, Matteo Rizzi, Miguel Angel Martin-Delgado, and Maciej Lewenstein
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11:30 |
Q 19.4 |
A single fermion in a Bose Josephson Junction — •Maximilian Rinck and Christoph Bruder
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11:45 |
Q 19.5 |
Nonclassical States of Matter generated by Parametric Amplification in a Spinor BEC — •Manuel Scherer, Bernd Lücke, Jan Peise, Jens Kruse, Oliver Topic, Frank Deuretzbacher, Wolfgang Ertmer, Luis Santos, Jan Arlt, and Carsten Klempt
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12:00 |
Q 19.6 |
Process-chain approach applied to the Bose-Hubbard model — •Dennis Hinrichs, Niklas Teichmann, and Martin Holthaus
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12:15 |
Q 19.7 |
Comparison of stochastic techniques for finite temperature Bose gases — Stuart Cockburn, •Antonio Negretti, Nikolaos Proukakis, and Carsten Henkel
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12:30 |
Q 19.8 |
Non-abelian Gauge-field simulators with cold atoms — •Torben Schulze, Naceur Gaaloul, Holger Ahlers, Sebastian Bode, Felix Kösel, Vyacheslav Lebedev, Wolfgang Ertmer, Luis Santos, and Ernst Rasel
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12:45 |
Q 19.9 |
Strong-field-QED analogue on the lattice — Ralf Schützhold and •Nikodem Szpak
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