English

Two-photon photoassociation spectroscopy of the $^{2}\Sigma^+$ YbLi molecular ground state

Atomic Physics 2019-07-09 v2

Abstract

We report on measurements of the binding energies of several weakly bound vibrational states of the paramagnetic 174^{174}Yb6^{6}Li molecule in the electronic ground state using two-photon spectroscopy in an ultracold atomic mixture confined in an optical dipole trap. We theoretically analyze the experimental spectrum to obtain an accurate description of the long-range potential of the ground state molecule. Based on the measured binding energies, we arrive at an improved value of the interspecies ss-wave scattering length as0=30a_{s0}=30 a0a_0. Employing coherent two-photon spectroscopy we also observe the creation of ''dark'' atom-molecule superposition states in the heteronuclear Yb-Li system. This work is an important step towards the efficient production of ultracold YbLi molecules via association from an ultracold atomic mixture.

Keywords

Cite

@article{arxiv.1903.00603,
  title  = {Two-photon photoassociation spectroscopy of the $^{2}\Sigma^+$ YbLi molecular ground state},
  author = {Alaina Green and Jun Hui See Toh and Richard Roy and Ming Li and Svetlana Kotochigova and Subhadeep Gupta},
  journal= {arXiv preprint arXiv:1903.00603},
  year   = {2019}
}

Comments

10 pages, 7 figures, 2 tables