English

Observation of collisions between cold Li atoms and Yb$^+$ ions

Atomic Physics 2017-10-25 v2

Abstract

We report on the observation of cold collisions between 6^6Li atoms and Yb+^+ ions. This combination of species has recently been proposed as the most suitable for reaching the quantum limit in hybrid atom-ion systems, due to its large mass ratio. For atoms and ions prepared in the 2S1/2^2S_{1/2} ground state, the charge transfer and association rate is found to be at least~103^{3} times smaller than the Langevin collision rate. These results confirm the excellent prospects of 6^6Li--Yb+^+ for sympathetic cooling and quantum information applications. For ions prepared in the excited electronic states 2P1/2^2P_{1/2}, 2D3/2^2D_{3/2} and 2F7/2^2F_{7/2}, we find that the reaction rate is dominated by charge transfer and does not depend on the ionic isotope nor the collision energy in the range \sim~1--120~mK. The low charge transfer rate for ground state collisions is corroborated by theory, but the 4f4f shell in the Yb+^+ ion prevents an accurate prediction for the charge transfer rate of the 2P1/2^2P_{1/2}, 2D3/2^2D_{3/2} and 2F7/2^2F_{7/2} states. Using \textit{ab initio} methods of quantum chemistry we calculate the atom-ion interaction potentials up to energies of 30×103\times 10^3~cm1^{-1}, and use these to give qualitative explanations of the observed rates.

Keywords

Cite

@article{arxiv.1707.01729,
  title  = {Observation of collisions between cold Li atoms and Yb$^+$ ions},
  author = {J. Joger and H. Fürst and N. Ewald and T. Feldker and M. Tomza and R. Gerritsma},
  journal= {arXiv preprint arXiv:1707.01729},
  year   = {2017}
}

Comments

8 pages, 7 figures (including appendices)