English

Raman Gray Molasses Cooling of Cesium Atoms on the D2 Line

Atomic Physics 2018-10-03 v1 Quantum Physics

Abstract

We present a systematic study on the Raman gray molasses cooling (RGMC) of cesium atoms on the D2D_2 transition. Due to the large splitting in the excited hyperfine transitions of cesium D2D_2 line, it is relatively simple to implement the RGMC with suitable frequency control on the trapping and repumping lasers of the magneto-optical trap (MOT). We have achieved an atom temperature of 1.7±\pm0.2 μ\muK after the RGMC with 3.2×1083.2\times 10^8 atoms. The phase space density is 1.43×1041.43\times 10^{-4}. Compared to the condition with a bare MOT or the MOT with a standard polarization gradient cooling, the phase space density increases by a factor of more than 10310^3 or 1010, respectively.

Keywords

Cite

@article{arxiv.1807.05745,
  title  = {Raman Gray Molasses Cooling of Cesium Atoms on the D2 Line},
  author = {Ya-Fen Hsiao and Yu-Ju Lin and Ying-Cheng Chen},
  journal= {arXiv preprint arXiv:1807.05745},
  year   = {2018}
}