English

Long-Lived Ultracold Molecules with Electric and Magnetic Dipole Moments

Quantum Gases 2018-02-14 v2 Atomic Physics Quantum Physics

Abstract

We create fermionic dipolar 23^{23}Na6^6Li molecules in their triplet ground state from an ultracold mixture of 23^{23}Na and 6^6Li. Using magneto-association across a narrow Feshbach resonance followed by a two-photon STIRAP transfer to the triplet ground state, we produce 3×1043\,{\times}\,10^4 ground state molecules in a spin-polarized state. We observe a lifetime of 4.6s4.6\,\text{s} in an isolated molecular sample, approaching the pp-wave universal rate limit. Electron spin resonance spectroscopy of the triplet state was used to determine the hyperfine structure of this previously unobserved molecular state.

Keywords

Cite

@article{arxiv.1707.03925,
  title  = {Long-Lived Ultracold Molecules with Electric and Magnetic Dipole Moments},
  author = {Timur M. Rvachov and Hyungmok Son and Ariel T. Sommer and Sepehr Ebadi and Juliana J. Park and Martin W. Zwierlein and Wolfgang Ketterle and Alan O. Jamison},
  journal= {arXiv preprint arXiv:1707.03925},
  year   = {2018}
}

Comments

5 pages, 5 figures