English

Production of rovibronic ground state RbCs molecules via two-photon cascade decay

Atomic Physics 2015-06-22 v1

Abstract

We report the production of ultracold RbCs molecules in the rovibronic ground state, i.e., X1Σ+(v=0,J=0)X^1\Sigma^+ (v=0, J=0), by short-range photoassociation to the 23Π02^3\Pi_{0} state followed by spontaneous emission. We use narrowband depletion spectroscopy to probe the distribution of rotational levels formed in the X1Σ+(v=0)X ^1\Sigma^+(v=0) state. We conclude, based on selection rules, that the primary decay route to X1Σ+(v=0)X ^1\Sigma^+(v=0) is a two-step cascade decay that leads to as much as 33%33\% branching into the J=0J=0 rotational level. The experimental simplicity of our scheme opens up the possibility of easier access to the study and manipulation of ultracold heteronuclear molecules in the rovibronic ground state.

Keywords

Cite

@article{arxiv.1407.7512,
  title  = {Production of rovibronic ground state RbCs molecules via two-photon cascade decay},
  author = {Toshihiko Shimasaki and Michael Bellos and C. D. Bruzewicz and Zack Lasner and David DeMille},
  journal= {arXiv preprint arXiv:1407.7512},
  year   = {2015}
}

Comments

5 pages, 4 figures