English

A steady-state magneto-optical trap with 100 fold improved phase-space density

Atomic Physics 2018-03-28 v3 Quantum Gases

Abstract

We demonstrate a continuously loaded 88Sr^{88}\mathrm{Sr} magneto-optical trap (MOT) with a steady-state phase-space density of 1.3(2)×1031.3(2) \times 10^{-3}. This is two orders of magnitude higher than reported in previous steady-state MOTs. Our approach is to flow atoms through a series of spatially separated laser cooling stages before capturing them in a MOT operated on the 7.4-kHz linewidth Sr intercombination line using a hybrid slower+MOT configuration. We also demonstrate producing a Bose-Einstein condensate at the MOT location, despite the presence of laser cooling light on resonance with the 30-MHz linewidth transition used to initially slow atoms in a separate chamber. Our steady-state high phase-space density MOT is an excellent starting point for a continuous atom laser and dead-time free atom interferometers or clocks.

Keywords

Cite

@article{arxiv.1707.05370,
  title  = {A steady-state magneto-optical trap with 100 fold improved phase-space density},
  author = {Shayne Bennetts and Chun-Chia Chen and Benjamin Pasquiou and Florian Schreck},
  journal= {arXiv preprint arXiv:1707.05370},
  year   = {2018}
}

Comments

11 pages, 5 figures

R2 v1 2026-06-22T20:49:36.478Z