|
14:30 |
Q 33.1 |
Tomography of a number-resolving detector by reconstruction of an atomic many-body quantum state — •Mareike Hetzel, Luca Pezzè, Cebrail Pür, Martin Quensen, Andreas Hüper, Jiao Geng, Jens Kruse, Luis Santos, Wolfgang Ertmer, Augusto Smerzi, and Carsten Klempt
|
|
|
|
14:45 |
Q 33.2 |
Bose-Einstein condensation for hard-core bosons: Universal upper bound and Bogoliubov theory — •Martina Jung, Sophie Brass, Julia Liebert, Sebastian Paeckel, and Christian Schilling
|
|
|
|
15:00 |
Q 33.3 |
Optimal preparation of spin squeezed states with one-dimensional Bose-Einstein Condensates — •Tiantian Zhang, Mira Maiwöger, Filippo Borselli, Yevhenii Kuriatnikov, Jörg Schmiedmayer, and Maximilian Prüfer
|
|
|
|
15:15 |
Q 33.4 |
Engineering Correlated Spin-Momentum Pairs in a Quantum Gas Coupled to an Optical Cavity — Fabian Finger, Rodrigo Rosa-Medina, •Nicola Reiter, Panagiotis Christodoulou, Tobias Donner, and Tilman Esslinger
|
|
|
|
15:30 |
Q 33.5 |
Interference of two composite bosons — Mama Kabir Njoya Mforifoum, Andreas Buchleitner, and •Gabriel Dufour
|
|
|
|
15:45 |
Q 33.6 |
A dipolar quantum gas microscope — •Ralf Klemt, Kevin Ng, Jens Hertkorn, Paul Uerlings, Akshay Shankar, Lucas Lavoine, Tim Langen, and Tilman Pfau
|
|
|
|
16:00 |
Q 33.7 |
Towards coupling atomic tweezers to an optical cavity — •Stephan Roschinski, Johannes Schabbauer, Davide Natale, Giacomo Hvaring, Iris Haubold, Nicole Heider, Alexander Heiss, Marvin Holten, and Julian Léonard
|
|
|
|
16:15 |
Q 33.8 |
Floquet analysis of quantum dynamics in periodically driven optical lattices — •Usman Ali, Martin Holthaus, and Torsten Meier
|
|
|