We have measured the binding energy of 7Li Feshbach molecules deep into the nonuniversal regime by associating atoms in a Bose-Einstein condensate with a modulated magnetic field. We extract the scattering length from these measurements, correcting for nonuniversal short-range effects using the field-dependent effective range. With this more precise determination of the Feshbach resonance parameters we reanalyze our previous data on the location of atom loss features produced by the Efimov effect [Pollack et al., Science 326, 1683 (2009)]. We find the measured locations of the three- and four-body Efimov features to be consistent with universal theory at the 20%-30% level
Under certain circumstances, three or more interacting particles may form bound states. While the ge...
We study Efimov physics of three identical bosons with pairwise multichannel interactions for Feshba...
This thesis presents experiments exploring Feshbach molecules and Efimov trimers in an ultracold Bos...
We provide an exact solution of the Efimov spectrum in ultracold gases within the standard two-chann...
The quantum Efimov effect manifests itself in the limit of resonant two-body interactions, where the...
Efimov physics in two nuclear-spin sublevels of bosonic lithium is studied and it is shown that the ...
Efimov physics in two nuclear-spin sublevels of bosonic lithium is studied and it is shown that the ...
Efimov physics in two nuclear-spin sublevels of bosonic lithium is studied and it is shown that the ...
Efimov physics in two nuclear-spin sublevels of bosonic lithium is studied and it is shown that the ...
Efimov physics in two nuclear-spin sublevels of bosonic lithium is studied and it is shown that the ...
Efimov physics in ultracold gases is described very well by the universal scaling laws, based on the...
Efimov physics in ultracold gases is described very well by the universal scaling laws, based on the...
International audienceWe measure the critical scattering length for the appearance of the first thre...
International audienceWe measure the critical scattering length for the appearance of the first thre...
We study three-atom inelastic scattering in ultracold 39 K near a Feshbach resonance of interme...
Under certain circumstances, three or more interacting particles may form bound states. While the ge...
We study Efimov physics of three identical bosons with pairwise multichannel interactions for Feshba...
This thesis presents experiments exploring Feshbach molecules and Efimov trimers in an ultracold Bos...
We provide an exact solution of the Efimov spectrum in ultracold gases within the standard two-chann...
The quantum Efimov effect manifests itself in the limit of resonant two-body interactions, where the...
Efimov physics in two nuclear-spin sublevels of bosonic lithium is studied and it is shown that the ...
Efimov physics in two nuclear-spin sublevels of bosonic lithium is studied and it is shown that the ...
Efimov physics in two nuclear-spin sublevels of bosonic lithium is studied and it is shown that the ...
Efimov physics in two nuclear-spin sublevels of bosonic lithium is studied and it is shown that the ...
Efimov physics in two nuclear-spin sublevels of bosonic lithium is studied and it is shown that the ...
Efimov physics in ultracold gases is described very well by the universal scaling laws, based on the...
Efimov physics in ultracold gases is described very well by the universal scaling laws, based on the...
International audienceWe measure the critical scattering length for the appearance of the first thre...
International audienceWe measure the critical scattering length for the appearance of the first thre...
We study three-atom inelastic scattering in ultracold 39 K near a Feshbach resonance of interme...
Under certain circumstances, three or more interacting particles may form bound states. While the ge...
We study Efimov physics of three identical bosons with pairwise multichannel interactions for Feshba...
This thesis presents experiments exploring Feshbach molecules and Efimov trimers in an ultracold Bos...