6 papers
Programmable Assembly of Ground State Fermionic Tweezer Arrays
Naman Jain, Jin Zhang, Marcus Culemann +1
We demonstrate deterministic preparation of arbitrary two-component product states of fermionic Li atoms in an 88 optical tweezer array, achieving motional ground-state…
Magnifying the Wave Function of Interacting Fermionic Atoms
Sandra Brandstetter, Carl Heintze, Paul Hill +3
Understanding many body systems is a key challenge in physics. Single atom resolved imaging techniques have unlocked access to microscopic correlations in ultracold quantum gases.…
Simulating Chemistry with Fermionic Optical Superlattices
Fotios Gkritsis, Daniel Dux, Jin Zhang +3
We show that quantum number preserving Ansätze for variational optimization in quantum chemistry find an elegant mapping to ultracold fermions in optical superlattices. Using nati…
A modular quantum gas platform
Tobias Hammel, Maximilian Kaiser, Daniel Dux +3
We report on the development of a modular platform for programmable quantum simulation with atomic quantum gases. The platform is centered around exchangeable optical modules with…
Engineering single-atom angular momentum eigenstates in an optical tweezer
Philipp Lunt, Paul Hill, Johannes Reiter +3
We engineer angular momentum eigenstates of a single atom by using a novel all-optical approach based on the interference of Laguerre-Gaussian beams. We confirm the imprint of angu…
Realization of a Laughlin state of two rapidly rotating fermions
Philipp Lunt, Paul Hill, Johannes Reiter +3
We realize a Laughlin state of two rapidly rotating fermionic atoms in an optical tweezer. By utilizing a single atom and spin resolved imaging technique, we sample the Laughlin wa…