We report coherent association of atoms into a single weakly bound NaCs molecule in an optical tweezer through an optical Raman transition. The Raman technique uses a deeply bound electronic excited intermediate state to achieve a large transition dipole moment while reducing photon scattering. Starting from two atoms in their relative motional ground state, we achieve an optical transfer efficiency of 69%. The molecules have a binding energy of 770.2 MHz at 8.83(2) G. This technique does not rely on Feshbach resonances or narrow excited-state lines and may allow a wide range of molecular species to be assembled atom by atom
Control over all internal and external degrees of freedom of molecules at the level of single quantu...
We report the production of a high phase-space density mixture of 87Rb and 133Cs atoms in a levitate...
This thesis reports the first steps towards the production of an optical tweezer array of ultracold ...
We thank Bo Gao and Paul Julienne for discussion and Robert Moszynski for providing theoretical tran...
We demonstrate the formation of a single NaCs molecule in an optical tweezer by magnetoassociation t...
We report the preparation of exactly one 87Rb atom and one133Cs atom in the same optical tweezer as ...
Paper Part of Focus on New Frontiers of Cold Molecules Research A narrow-linewidth, dual-wavelengt...
We present the production of ultracold 87 RbCs molecules in the electronic, rovibrational and hyperf...
We report the observation of microwave coherent control of rotational states of ultracold 85Rb133Cs ...
We report simultaneous Raman sideband cooling of a single 87Rb atom and a single 133Cs atom held in ...
The conversion of an atomic condensate to a condensate of diatomic molecules in the rovibrational gr...
We demonstrate full quantum state control of two species of single atoms using optical tweezers and ...
Chemical reactions typically proceed via stochastic encounters between reactants. Going beyond this ...
We report the creation of a sample of over 1000 ultracold Rb 87 Cs 133 molecules in the lowest rov...
We report the binding energy of Rb87Cs133 molecules in their rovibrational ground state measured usi...
Control over all internal and external degrees of freedom of molecules at the level of single quantu...
We report the production of a high phase-space density mixture of 87Rb and 133Cs atoms in a levitate...
This thesis reports the first steps towards the production of an optical tweezer array of ultracold ...
We thank Bo Gao and Paul Julienne for discussion and Robert Moszynski for providing theoretical tran...
We demonstrate the formation of a single NaCs molecule in an optical tweezer by magnetoassociation t...
We report the preparation of exactly one 87Rb atom and one133Cs atom in the same optical tweezer as ...
Paper Part of Focus on New Frontiers of Cold Molecules Research A narrow-linewidth, dual-wavelengt...
We present the production of ultracold 87 RbCs molecules in the electronic, rovibrational and hyperf...
We report the observation of microwave coherent control of rotational states of ultracold 85Rb133Cs ...
We report simultaneous Raman sideband cooling of a single 87Rb atom and a single 133Cs atom held in ...
The conversion of an atomic condensate to a condensate of diatomic molecules in the rovibrational gr...
We demonstrate full quantum state control of two species of single atoms using optical tweezers and ...
Chemical reactions typically proceed via stochastic encounters between reactants. Going beyond this ...
We report the creation of a sample of over 1000 ultracold Rb 87 Cs 133 molecules in the lowest rov...
We report the binding energy of Rb87Cs133 molecules in their rovibrational ground state measured usi...
Control over all internal and external degrees of freedom of molecules at the level of single quantu...
We report the production of a high phase-space density mixture of 87Rb and 133Cs atoms in a levitate...
This thesis reports the first steps towards the production of an optical tweezer array of ultracold ...