Loading of atoms into an optical trap with high initial phase-space density
Quantum Gases
2018-12-05 v2
Abstract
We report a method for loading cold atoms into an optical trap with high initial phase-space density (PSD). When the trap beam is overlapped with atoms in optical molasses of optimized parameters including large cooling beam detuning compared with conventional detuning used for a magneto-optical trap (MOT), more than rubidium atoms with an initial temperature less than 20 K are loaded into a single beam trap. The obtained maximum initial PSD is estimated to be , which is one or two orders of magnitude greater than that achieved with the conventional loading into an optical trap from atoms in a MOT. The proposed method is promising for creating a quantum gas with a large number of atoms in a short evaporation time.
Cite
@article{arxiv.1611.08960,
title = {Loading of atoms into an optical trap with high initial phase-space density},
author = {Kosuke Shibata and Shota Yonekawa and Satoshi Tojo},
journal= {arXiv preprint arXiv:1611.08960},
year = {2018}
}
Comments
6 pages, 5 figures