activity
20032008
most citedA High Phase-Space-Density Gas of Polar Molecules

1.8k citations · 2.7k across the 5 of their papers we have counts for

collaborators

5 papers

quant-ph20081.8k cited

A High Phase-Space-Density Gas of Polar Molecules

K. -K. Ni, S. Ospelkaus, M. H. G. de Miranda +7

A quantum gas of ultracold polar molecules, with long-range and anisotropic interactions, would not only enable explorations of a large class of many-body physics phenomena, but co…

cond-mat.other2008543 cited

Using photoemission spectroscopy to probe a strongly interacting Fermi gas

J. T. Stewart, J. P. Gaebler, D. S. Jin

Ultracold atom gases provide model systems in which many-body quantum physics phenomena can be studied. Recent experiments on Fermi gases have realized a phase transition to a Ferm…

cond-mat.other2007120 cited

Heteronuclear molecules in an optical dipole trap

J. J. Zirbel, K. -K. Ni, S. Ospelkaus +6

We report on the creation and characterization of heteronuclear KRb Feshbach molecules in an optical dipole trap. Starting from an ultracold gas mixture of K-40 and Rb-87 atoms, we…

cond-mat.other2007206 cited

p-wave Feshbach molecules

J. P. Gaebler, J. T. Stewart, J. L. Bohn +1

We have produced and detected molecules using a p-wave Feshbach resonance between 40K atoms. We have measured the binding energy and lifetime for these molecules and we find that t…

cond-mat.stat-mech20034 cited

A molecular Bose-Einstein condensate emerges from a Fermi sea

Markus Greiner, Cindy A. Regal, Deborah S. Jin

The realization of fermionic superfluidity in a dilute gas of atoms, analogous to superconductivity in metals, is a long-standing goal of ultracold gas research. Beyond being a new…