We report on the detection of extremely narrow Feshbach resonances by employing a Mott-insulating state for cesium atoms in a three-dimensional optical lattice. The Mott insulator protects the atomic ensemble from high background three-body losses in a magnetic field region where a broad Efimov resonance otherwise dominates the atom loss in bulk samples. Our technique reveals three ultra-narrow and previously unobserved Feshbach resonances in this region with widths below $\approx 10\,\mu$G, measured via Landau-Zener-type molecule formation and confirmed by theoretical predictions. For comparatively broader resonances we find a lattice-induced substructure in the respective atom-loss feature due to the interplay of tunneling and st...
This thesis presents a simple theoretical model of a Feshbach resonance between two colliding ultrac...
We study the phase diagram of ultracold bosons in an optical lattice near a Feshbach resonance. Depe...
This thesis presents experiments exploring Feshbach molecules and Efimov trimers in an ultracold Bos...
We prepare and study a metastable attractive Mott-insulator state formed with bosonic atoms in a thr...
We show that recent high-precision measurements of relative on-site interaction energies $\Delta U$ ...
5 pages, 4 figures, 1 tableInternational audienceWe have observed Feshbach resonances for 133Cs atom...
We have observed Feshbach resonances for 133Cs atoms in two different hyperfine states at static mag...
We have observed three Feshbach resonances in collisions between 6Li and 23Na atoms. The resonances ...
Ultracold atomic gas experiments have proven to be a versatile ground for studying quantum mechanics...
We study a model of an equal mixture of two species of fermions in a deep optical lattice at a filli...
Trapped cold atoms at very low temperatures, now readily accessible experimentally, can be controlle...
We have observed and located more than 60 magnetic field-induced Feshbach resonances in ultracold co...
The susceptibility of ultracold gases to precise manipulation via external fields makes them ideal s...
This thesis presents a simple theoretical model of a Feshbach resonance between two colliding ultrac...
We study the phase diagram of ultracold bosons in an optical lattice near a Feshbach resonance. Depe...
This thesis presents experiments exploring Feshbach molecules and Efimov trimers in an ultracold Bos...
We prepare and study a metastable attractive Mott-insulator state formed with bosonic atoms in a thr...
We show that recent high-precision measurements of relative on-site interaction energies $\Delta U$ ...
5 pages, 4 figures, 1 tableInternational audienceWe have observed Feshbach resonances for 133Cs atom...
We have observed Feshbach resonances for 133Cs atoms in two different hyperfine states at static mag...
We have observed three Feshbach resonances in collisions between 6Li and 23Na atoms. The resonances ...
Ultracold atomic gas experiments have proven to be a versatile ground for studying quantum mechanics...
We study a model of an equal mixture of two species of fermions in a deep optical lattice at a filli...
Trapped cold atoms at very low temperatures, now readily accessible experimentally, can be controlle...
We have observed and located more than 60 magnetic field-induced Feshbach resonances in ultracold co...
The susceptibility of ultracold gases to precise manipulation via external fields makes them ideal s...
This thesis presents a simple theoretical model of a Feshbach resonance between two colliding ultrac...
We study the phase diagram of ultracold bosons in an optical lattice near a Feshbach resonance. Depe...
This thesis presents experiments exploring Feshbach molecules and Efimov trimers in an ultracold Bos...