We show that recent high-precision measurements of relative on-site interaction energies ΔU in a Mott insulator require a theoretical description beyond the standard Hubbard-model interpretation, when combined with an accurate coupled-channels calculation. In contrast to more sophisticated lattice models, which can be elaborate especially for parameter optimization searches, we introduce an easy to use effective description of U valid over a wide range of interaction strengths modeling atomic pairs confined to single lattice sites. This concise model allows for a straightforward combination with a coupled-channels analysis. With this model we perform such a coupled-channels analysis of high-precision Li7 spectroscopic data on the on-site in...
In this chapter, we describe scattering resonance phenomena in general, and focus on the mechanism o...
The susceptibility of ultracold gases to precise manipulation via external fields makes them ideal s...
We perform radio-frequency dissociation spectroscopy of weakly bound 6Li2 Feshbach molecules using l...
We show that recent high-precision measurements of relative on-site interaction energies ΔU in a Mot...
Ultracold atomic gas experiments have proven to be a versatile ground for studying quantum mechanics...
Feshbach resonances are commonly described by a single-resonance Feshbach model, and open-channel re...
We study a model of an equal mixture of two species of fermions in a deep optical lattice at a filli...
We have observed 26 interspecies Feshbach resonances at fields up to 2050 G in ultracold 6Li+23Na mi...
Combining the measured binding energies of four of the most weakly bound rovibrational levels of the...
We investigate the strongly interacting regime in an optically trapped Li/sup 6/ Fermi mixture near ...
The ultracold mixture of 23Na and 87Rb atoms has become an important system for investigating physic...
We observe interspecies Feshbach resonances due to s-wave bound states in ultracold 39K -133Cs scatt...
In this chapter, we describe scattering resonance phenomena in general, and focus on the mechanism o...
The susceptibility of ultracold gases to precise manipulation via external fields makes them ideal s...
We perform radio-frequency dissociation spectroscopy of weakly bound 6Li2 Feshbach molecules using l...
We show that recent high-precision measurements of relative on-site interaction energies ΔU in a Mot...
Ultracold atomic gas experiments have proven to be a versatile ground for studying quantum mechanics...
Feshbach resonances are commonly described by a single-resonance Feshbach model, and open-channel re...
We study a model of an equal mixture of two species of fermions in a deep optical lattice at a filli...
We have observed 26 interspecies Feshbach resonances at fields up to 2050 G in ultracold 6Li+23Na mi...
Combining the measured binding energies of four of the most weakly bound rovibrational levels of the...
We investigate the strongly interacting regime in an optically trapped Li/sup 6/ Fermi mixture near ...
The ultracold mixture of 23Na and 87Rb atoms has become an important system for investigating physic...
We observe interspecies Feshbach resonances due to s-wave bound states in ultracold 39K -133Cs scatt...
In this chapter, we describe scattering resonance phenomena in general, and focus on the mechanism o...
The susceptibility of ultracold gases to precise manipulation via external fields makes them ideal s...
We perform radio-frequency dissociation spectroscopy of weakly bound 6Li2 Feshbach molecules using l...