Formation of molecular ions by radiative association of cold trapped atoms and ions
ORAL
Abstract
Radiative emission during cold collisions between trapped laser-cooled Rb atoms and alkaline-earth ions (Ca+, Sr+, Ba+) and Yb+ are studied theoretically, using accurate effective-core-potential based quantum chemistry calculations of potential energy curves and transition dipole moments of the related molecular ions. Radiative association of molecular ions is predicted to occur for all systems with a cross section two to ten times larger than the radiative charge transfer one. Partial and total rate constants are also calculated and compared to available experiments. Narrow shape resonances are expected, which could be detectable at low temperature with an experimental resolution at the limit of the present standards. Vibrational distributions show that the final molecular ions are not created in their ground state level.
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Authors
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Olivier Dulieu
Laboratoire Aim\'e Cotton, CNRS, Universit\'e Paris-Sud, ENS Cachan, Laboratoire Aim\'e Cotton, CNRS/ Univ. Paris-Sud/ ENS Cachan, Orsay, France, Laboratoire Aim\'e Cotton, CNRS, Univ. Paris-Sud, ENS Cachan, Orsay, Laboratoire Aime Cotton, CNRS, Univ. Paris-Sud, ENS Cachan, Orsay, France
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Humberto da Silva Jr
Laboratoire Aim\'e Cotton, CNRS, Universit\'e Paris-Sud, ENS Cachan
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Mireille Aymar
Laboratoire Aim\'e Cotton, CNRS, Universit\'e Paris-Sud, ENS Cachan
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Maurice Raoult
Laboratoire Aim\'e Cotton, CNRS, Universit\'e Paris-Sud, ENS Cachan