collaborators

6 papers

cond-mat.quant-gas2026

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…

cond-mat.quant-gas2025

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.…

cond-mat.quant-gas2025

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…

cond-mat.quant-gas2025

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…

cond-mat.quant-gas2025

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…

cond-mat.quant-gas2025

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…