arXiv · 1301.0724
Light-Assisted Cold Chemical Reactions of Barium Ions with Rubidium Atoms
Abstract
Light-assisted reactive collisions between laser-cooled Ba+ ions and Rb atoms were studied in an ion-atom hybrid trap. The reaction rate was found to strongly depend on the electronic state of the reaction partners with the largest rate constant (7(2) x 10^-11 cm^3 s^-1) obtained for the excited Ba+(6s)+Rb(5p) reaction channel. Similar to the previously studied Ca+ + Rb system, charge transfer and radiative association were found to be the dominant reactive processes. The generation of molecular ions by radiative association could directly be observed by their sympathetic cooling into a Coulomb crystal. Potential energy curves up to the Ba+(6s)+Rb(5p) asymptote and reactive-scattering cross sections for the radiative processes were calculated. The theoretical rate constant obtained for the lowest reaction channel Ba+(6s)+Rb(5s) is compatible with the experimental estimates obtained thus far.
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Felix H. J. Hall, Mireille Aymar, Maurice Raoult, Olivier Dulieu, Stefan Willitsch. 2013-01-04. Light-Assisted Cold Chemical Reactions of Barium Ions with Rubidium Atoms. https://doi.org/10.1080/00268976.2013.770930
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