English

Microwave shielding of bosonic NaRb molecules

Atomic Physics 2023-09-21 v2 Quantum Gases Quantum Physics

Abstract

Recent years have witnessed tremendous progresses in creating and manipulating ground-state ultracold polar molecules. However, the two-body loss regardless of the chemical reactivities is still a hurdle for many future explorations. Here, we investigate the loss suppression of non-reactive bosonic 23^{23}Na87^{87}Rb molecules with a circular polarized microwave blue-detuned to the rotational transition. We achieve suppression of the loss by two orders of magnitude with the lowest two-body loss rate coefficient reduced to 3×1012 cm3/s3\times10^{-12}~\rm{cm^3/s}. Meanwhile, the elastic collision rate coefficient is increased to the 108 cm3/s10^{-8}~\rm{cm^3/s} level. The large good-to-bad collision ratio has allowed us to carry out evaporative cooling of 23^{23}Na87^{87}Rb with an efficiency of 1.7(2), increasing the phase-space density by a factor of 10. With further improvements, this technique holds great promises for creating a Bose-Einstein condensate of ultracold polar molecules.

Keywords

Cite

@article{arxiv.2304.08312,
  title  = {Microwave shielding of bosonic NaRb molecules},
  author = {Junyu Lin and Guanghua Chen and Mucan Jin and Zhaopeng Shi and Fulin Deng and Wenxian Zhang and Goulven Quéméner and Tao Shi and Su Yi and Dajun Wang},
  journal= {arXiv preprint arXiv:2304.08312},
  year   = {2023}
}

Comments

11 pages, 8 figures. Figure 3(c) is updated based on the calculation in Appendix D2. The 1st version was submitted on 17 Apr 2023

R2 v1 2026-06-28T10:08:25.756Z