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Erlangen 2022 – wissenschaftliches Programm

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A: Fachverband Atomphysik

A 29: Ultra-cold atoms, ions and BEC (joint session A/Q)

Donnerstag, 17. März 2022, 16:30–18:30, P

16:30 A 29.1 Ultracold Feshbach molecules in orbital optical lattices — •Yann Kiefer, Max Hachmann, and Andreas Hemmerich
  16:30 A 29.2 The contribution has been withdrawn.
16:30 A 29.3 Optically trapping single ions in a high-focused laser beam — •Wei Wu, Fabian Thielemann, Joachim Welz, Pascal Weckesser, Daniel Hönig, Amir Mohammadi, Thomas Walker, and Tobias Schätz
16:30 A 29.4 Feshbach Resonances in a hybrid Atom-Ion System — •Joachim Welz, Fabian Thielemann, Wei Wu, Thomas Walker, Pascal Weckesser, Daniel Hönig, Amir Mohammadi, and Tobias Schätz
16:30 A 29.5 A dipolar quantum gas microscope — •Paul Uerlings, Kevin Ng, Jens Hertkorn, Jan-Niklas Schmidt, Ralf Klemt, Sean Graham, Tim Langen, and Tilman Pfau
16:30 A 29.6 Compact device for painting blue-detuned time-averaged optical potentials for space application — •Kai Frye, Marius Glaeser, Christian Schubert, Waldemar Herr, Ernst Rasel, and BECCAL Team
16:30 A 29.7 Trapping Ions And Ion Coulomb Crystals In Optical Lattices — •Daniel Hoenig, Fabian Thielemann, Joachim Welz, Wei Wu, Thomas Walker, Leon Karpa, Amir Mohammadi, and Tobias Schaetz
16:30 A 29.8 Vortex motion quantifies strong dissipation in a holographic superfluidPaul Wittmer, Christian-Marcel Schmied, •Martin Zboron, Thomas Gasenzer, and Carlo Ewerz
16:30 A 29.9 Accordion lattice set-up for trapping Dysprosium ultra-cold gases in two dimensions — •Valentina Salazar Silva, Jianshun Gao, Karthik Chandrashekara, Joschka Schöner, Christian Gölzhäuser, Lennart Hoenen, Shuwei Jin, and Lauriane Chomaz
16:30 A 29.10 Towards simulation of lattice gauge theories with ultracold ytterbium atoms in hybrid optical potentials — •Tim Oliver Hoehn, Etienne Staub, Guillaume Brochier, Clara Zoe Bachorz, David Gröters, Bharath Hebbe Madhusudhana, Nelson Darkwah Oppong, and Monika Aidelsburger
16:30 A 29.11 Investigating ultracold chemical processes with NaK molecules — •Jakob Stalmann, Jula Simone Morich, Kai Konrad Voges, and Silke Ospelkaus
16:30 A 29.12 A moveable tuneout optical dipole trap for ultracold 6Li in a 133Cs BEC — •Robert Freund, Binh Tran, Eleonora Lippi, Michael Rautenberg, Tobias Krom, Manuel Gerken, Lauriane Chomaz, and Matthias Weidemüller
16:30 A 29.13 Towards Quantum Simulation of Light-Matter Interfaces with Strontium Atoms in Optical Lattices — •Valentin Klüsener, Jan Trautmann, Dimitry Yankelev, Annie J. Park, Immanuel Bloch, and Sebastian Blatt
16:30 A 29.14 Magnetic-field-coils and 3D-MOT for novel dysprosium quantum gas experiment — •Joschka Schöner, Lennart Hoenen, Jianshun Gao, Christian Gölzhäuser, Karthik Chandrashekara, Valentina Salazar Silva, Shuwei Jin, and Lauriane Chomaz
16:30 A 29.15 Dipolar Supersolid States of Matter with Dysprosium — •Kevin Ng, Jan-Niklas Schmidt, Jens Hertkorn, Mingyang Guo, Sean Graham, Paul Uerlings, Ralf Klemt, Tim Langen, Martin Zwierlein, and Tilman Pfau
16:30 A 29.16 Towards dark energy search using atom interferometry in microgravity — •Magdalena Misslisch, Holger Ahlers, Maike Lachmann, and Ernst Rasel
16:30 A 29.17 Excitation Spectra of Homogeneous Ultracold Fermi Gases — •René Henke, Hauke Biss, Niclas Luick, Jonas Faltinath, Lennart Sobirey, Thomas Lompe, Markus Bohlen, and Henning Moritz
16:30 A 29.18 RF and MW coils for experimental quantum simulators — •Hüseyin Yildiz, Tobias Hammel, Maximilian Kaiser, Keerthan Subramanian, Matthias Weidemüller, and Selim Jochim
16:30 A 29.19 A new apparatus for trapping single strontium atoms in arrays of optical microtrapsTobias Kree, •Felix Rönchen, Jonas Schmitz, and Michael Köhl
16:30 A 29.20 Quantum simulation of many-body non-equilibrium dynamics in tilted 1D fermi-hubbard model. — •Bharath Hebbe Madhusudhana, Sebastian Scherg, Thomas Kohlert, Immanuel Bloch, and Monika Aidelsburger
16:30 A 29.21 Tunable Beyond-Ising Interactions in Tweezer Arrays by Rydberg DressingLea Steinert, •Philip Osterholz, Arno Trautmann, and Christian Groß
16:30 A 29.22 Multiloop functional renormalization group study of the Fermi polaron problem — •Marcel Gievers
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