Recent years have seen tremendous progress in the field of cold and ultracold molecules. A central goal in the field is currently the realization of stable rovibronic ground-state molecular samples in the regime of quantum degeneracy, e.g. in the form of molecular Bose-Einstein condensates, molecular degenerate Fermi gases, or, when an optical lattice is present, molecular Mott-insulator phases. However, molecular samples are not readily cooled to the extremely low temperatures at which quantum degeneracy occurs. In particular, laser cooling, the 'workhorse' for the field of atomic quantum gases, is generally not applicable to molecular samples. Here we take an important step beyond previous work1 and provide details on the realization of a...
We propose the creation of a molecular Bose-Einstein condensate by loading an atomic condensate into...
We report efficient production of quantum gases of 6Li using a sub-Doppler cooling scheme based on t...
-Since the first observation of Bose-Einstein condensation, the field of matter wave optics has prog...
Control over all internal and external degrees of freedom of molecules at the level of single quantu...
We produce an ultracold and dense sample of rovibronic ground state Cs(2) molecules close to the reg...
Control over all internal and external degrees of freedom of molecules at the level of single quantu...
Ultracold polar molecular gases promise new directions and exciting appli-cations in precision measu...
One possibility for the creation of ultracold, high phase space density quantum gases of molecules i...
Ultracold molecules are ideal platforms for many important applications, ranging from quantum simula...
Ultracold polar molecules, because of their long-range, spatially anisotropic interactions, are a ne...
Chemical reactions can be surprisingly efficient at ultracold temperatures ( < 1mK) due to the wave ...
One possible way to produce ultra-cold, high-phase-space-density quantum gases of molecules in the r...
Ultracold molecular gases are promising as an avenue to rich many-body physics, quantum chemistry, q...
We demonstrate efficient transfer of ultracold molecules into a deeply bound rovibrational level of ...
Author Institution: Physics Department, Yale University, New Haven, CT 06520There is a growing inter...
We propose the creation of a molecular Bose-Einstein condensate by loading an atomic condensate into...
We report efficient production of quantum gases of 6Li using a sub-Doppler cooling scheme based on t...
-Since the first observation of Bose-Einstein condensation, the field of matter wave optics has prog...
Control over all internal and external degrees of freedom of molecules at the level of single quantu...
We produce an ultracold and dense sample of rovibronic ground state Cs(2) molecules close to the reg...
Control over all internal and external degrees of freedom of molecules at the level of single quantu...
Ultracold polar molecular gases promise new directions and exciting appli-cations in precision measu...
One possibility for the creation of ultracold, high phase space density quantum gases of molecules i...
Ultracold molecules are ideal platforms for many important applications, ranging from quantum simula...
Ultracold polar molecules, because of their long-range, spatially anisotropic interactions, are a ne...
Chemical reactions can be surprisingly efficient at ultracold temperatures ( < 1mK) due to the wave ...
One possible way to produce ultra-cold, high-phase-space-density quantum gases of molecules in the r...
Ultracold molecular gases are promising as an avenue to rich many-body physics, quantum chemistry, q...
We demonstrate efficient transfer of ultracold molecules into a deeply bound rovibrational level of ...
Author Institution: Physics Department, Yale University, New Haven, CT 06520There is a growing inter...
We propose the creation of a molecular Bose-Einstein condensate by loading an atomic condensate into...
We report efficient production of quantum gases of 6Li using a sub-Doppler cooling scheme based on t...
-Since the first observation of Bose-Einstein condensation, the field of matter wave optics has prog...