Understanding and controlling collisions is crucial to the burgeoning field of ultracold molecules. All experiments so far have observed fast loss of molecules from the trap. However, the dominant mechanism for collisional loss is not well understood when there are no allowed 2-body loss processes. Here we experimentally investigate collisional losses of nonreactive ultracold 87Rb133Cs molecules, and compare our findings with the sticky collision hypothesis that pairs of molecules form long-lived collision complexes. We demonstrate that loss of molecules occupying their rotational and hyperfine ground state is best described by second-order rate equations, consistent with the expectation for complex-mediated collisions, but that the rate is...
We investigate the possibility of forming deeply bound ultracold RbCs molecules by a two-color photo...
We report the creation of a sample of over 1000 ultracold Rb 87 Cs 133 molecules in the lowest rov...
Polar molecules offer a new platform for quantum simulation of systems with long-range interactions,...
Understanding and controlling collisions is crucial to the burgeoning field of ultracold molecules. ...
We prepare mixtures of ultracold CaF molecules and Rb atoms in a magnetic trap and study their inela...
Understanding ultracold collisions involving molecules is of fundamental importance for current expe...
We produce ultracold dense trapped samples of Rb87Cs133 molecules in their rovibrational ground stat...
We report the production of a high phase-space density mixture of 87Rb and 133Cs atoms in a levitate...
Understanding ultracold collisions involving molecules is of fundamental importance for current expe...
We show that the lifetime of ultracold ground-state 87Rb133Cs molecules in an optical trap is limite...
We study inelastic collisions between CaF molecules and 87Rb atoms in a dual-species magneto-optical...
Understanding the sources of losses and chemical reactions of ultracold alkali-metal molecules is am...
Chemists usually study reactions at temperatures of tens or hundreds of kelvin, where reaction rates...
Paper Part of Focus on New Frontiers of Cold Molecules Research We investigate magnetoassociation ...
We demonstrate coherent control of the rotational and hyperfine state of ultracold, chemically stabl...
We investigate the possibility of forming deeply bound ultracold RbCs molecules by a two-color photo...
We report the creation of a sample of over 1000 ultracold Rb 87 Cs 133 molecules in the lowest rov...
Polar molecules offer a new platform for quantum simulation of systems with long-range interactions,...
Understanding and controlling collisions is crucial to the burgeoning field of ultracold molecules. ...
We prepare mixtures of ultracold CaF molecules and Rb atoms in a magnetic trap and study their inela...
Understanding ultracold collisions involving molecules is of fundamental importance for current expe...
We produce ultracold dense trapped samples of Rb87Cs133 molecules in their rovibrational ground stat...
We report the production of a high phase-space density mixture of 87Rb and 133Cs atoms in a levitate...
Understanding ultracold collisions involving molecules is of fundamental importance for current expe...
We show that the lifetime of ultracold ground-state 87Rb133Cs molecules in an optical trap is limite...
We study inelastic collisions between CaF molecules and 87Rb atoms in a dual-species magneto-optical...
Understanding the sources of losses and chemical reactions of ultracold alkali-metal molecules is am...
Chemists usually study reactions at temperatures of tens or hundreds of kelvin, where reaction rates...
Paper Part of Focus on New Frontiers of Cold Molecules Research We investigate magnetoassociation ...
We demonstrate coherent control of the rotational and hyperfine state of ultracold, chemically stabl...
We investigate the possibility of forming deeply bound ultracold RbCs molecules by a two-color photo...
We report the creation of a sample of over 1000 ultracold Rb 87 Cs 133 molecules in the lowest rov...
Polar molecules offer a new platform for quantum simulation of systems with long-range interactions,...