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Erlangen 2022 – wissenschaftliches Programm

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MO: Fachverband Molekülphysik

MO 7: Cold Molecules

Dienstag, 15. März 2022, 10:30–12:30, MO-H8

10:30 MO 7.1 Spin-state-controlled Penning collisions between metastable helium atoms and ground-state lithium atoms — •Tobias Sixt, Frank Stienkemeier, and Katrin Dulitz
10:45 MO 7.2 Bayesian optimization of molecular magneto-optical trapping — •Supeng Xu, Paul Kaebert, Mariia Stepanova, Timo Poll, Mirco Siercke, and Silke Ospelkaus
11:00 MO 7.3 Evaporation of microwave-shielded polar molecules to quantum degeneracyAndreas Schindewolf, •Roman Bause, Xing-Yan Chen, Marcel Duda, Tijs Karman, Immanuel Bloch, and Xin-Yu Luo
11:15 MO 7.4 Towards direct laser cooling of barium monofluoride — •Marian Rockenhäuser, Felix Kogel, Einius Pultinevicius, and Tim Langen
11:30 MO 7.5 Hyperfine resolved optical spectroscopy of the A2Π ← X2Σ+ transition in MgF — •Maximilian Doppelbauer, Sidney C. Wright, Simon Hofsäss, Boris Sartakov, Gerard Meijer, and Stefan Truppe
11:45 MO 7.6 A new perspective on cryogenic buffer gas beams: comparing AlF, CaF, MgF and YbF — •Sidney C. Wright, Maximilian Doppelbauer, Xiangyue Liu, H. Christian Schewe, Simon Hofsäss, Sebastian Kray, Jesús Pérez-Ríos, Gerard Meijer, and Stefan Truppe
12:00 MO 7.7 Buffer gas cooling and optical cycling of AlF molecules — •Simon Hofsäss, Maximilian Doppelbauer, Sidney Wright, Sebastian Kray, Jesus Perez-Rios, Boris Sartakov, Gerard Meijer, and Stefan Truppe
12:15 MO 7.8 Singlet Pathway to the Ground State of Ultracold Polar MoleculesAnbang Yang, Sofia Botsi, Sunil Kumar, Sambit B. Pal, Mark M. Lam, Ieva Cepaite, Andrew Laugharn, Victor A. Avalos Pinillos, Canming He, Xiaoyu Nie, and •Kai Dieckmann
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