Analyzing a single-laser repumping scheme for efficient loading of a strontium magneto-optical trap
Atomic Physics
2019-04-03 v2
Abstract
We demonstrate enhanced loading of strontium atoms into a magneto-optical trap using a repumping scheme from the metastable state via the doubly-excited state at . The number of trapped atoms is increased by an order of magnitude. The frequency and intensity dependence of the atom number enhancement, with respect to the non-repumping case, is well reproduced by a simple rate equation model, which also describes single-laser repumping schemes reported previously. The repumping scheme is limited by a weak additional loss channel into the long-lived state. For low repumping intensities, the signature of a halo formed by magnetically trapped atoms in the metastable state is found.
Keywords
Cite
@article{arxiv.1812.01258,
title = {Analyzing a single-laser repumping scheme for efficient loading of a strontium magneto-optical trap},
author = {Fachao Hu and Ingo Nosske and Luc Couturier and Canzhu Tan and Chang Qiao and Peng Chen and Y. H. Jiang and Bing Zhu and Matthias Weidemüller},
journal= {arXiv preprint arXiv:1812.01258},
year = {2019}
}