We investigate the energetics of reactions involving pairs of alkali-metal dimers. Atom exchange reactions to form homonuclear dimers are energetically allowed for some but not all of the heteronuclear dimers. We carry out high-level electronic structure calculations on the potential energy surfaces of all the heteronuclear alkali-metal trimers and show that trimer formation reactions are always energetically forbidden for low-lying singlet states of the dimers. The results have important implications for the stability of quantum gases of alkali-metal dimers
Author Institution: Department of Physics and Astronomy, State University of New York,; Stony Brook,...
We investigate the microwave spectra of ultracold alkali metal dimers in magnetic, electric and comb...
We investigate the energy levels of heteronuclear alkali-metal dimers in levels correlating with the...
We investigate the energy levels of heteronuclear alkali-metal dimers in levels correlating with the...
Ultracold molecules with both electron spin and an electric dipole moment offer new possibilities in...
Ultracold collisions between spin-polarized Na atoms and vibrationally excited Na2 molecules are inv...
We present calculations of the hyperfine coupling constants for all the heteronuclear alkali-metal d...
Chemists usually study reactions at temperatures of tens or hundreds of kelvin, where reaction rates...
We explore the potential energy surfaces for NH molecules interacting with alkali-metal and alkaline...
We consider the possibilities for producing ultracold mixtures of K and Cs and forming KCs molecules...
The Rb-NH interaction is investigated as a prototype for interactions between alkali-metal atoms and...
We present an efficient computational method for calculating the binding energies of the bound state...
We report the production of a high phase-space density mixture of 87Rb and 133Cs atoms in a levitate...
The cooling of molecules into the ultracold regime allows for high resolution laser spectroscopy tha...
We investigate the interactions between ultracold alkali-metal atoms and closed-shell atoms using el...
Author Institution: Department of Physics and Astronomy, State University of New York,; Stony Brook,...
We investigate the microwave spectra of ultracold alkali metal dimers in magnetic, electric and comb...
We investigate the energy levels of heteronuclear alkali-metal dimers in levels correlating with the...
We investigate the energy levels of heteronuclear alkali-metal dimers in levels correlating with the...
Ultracold molecules with both electron spin and an electric dipole moment offer new possibilities in...
Ultracold collisions between spin-polarized Na atoms and vibrationally excited Na2 molecules are inv...
We present calculations of the hyperfine coupling constants for all the heteronuclear alkali-metal d...
Chemists usually study reactions at temperatures of tens or hundreds of kelvin, where reaction rates...
We explore the potential energy surfaces for NH molecules interacting with alkali-metal and alkaline...
We consider the possibilities for producing ultracold mixtures of K and Cs and forming KCs molecules...
The Rb-NH interaction is investigated as a prototype for interactions between alkali-metal atoms and...
We present an efficient computational method for calculating the binding energies of the bound state...
We report the production of a high phase-space density mixture of 87Rb and 133Cs atoms in a levitate...
The cooling of molecules into the ultracold regime allows for high resolution laser spectroscopy tha...
We investigate the interactions between ultracold alkali-metal atoms and closed-shell atoms using el...
Author Institution: Department of Physics and Astronomy, State University of New York,; Stony Brook,...
We investigate the microwave spectra of ultracold alkali metal dimers in magnetic, electric and comb...
We investigate the energy levels of heteronuclear alkali-metal dimers in levels correlating with the...