Low velocity quantum reflection of Bose-Einstein condensates
Abstract
We studied quantum reflection of Bose-Einstein condensates at normal incidence on a square array of silicon pillars. For incident velocities of 2.5-26 mm/s observations agreed with theoretical predictions that the Casimir-Polder potential of a reduced density surface would reflect slow atoms with much higher probability. At low velocities (0.5-2.5 mm/s), we observed that the reflection probability saturated around 60% rather than increasing towards unity. We present a simple model which explains this reduced reflectivity as resulting from the combined effects of the Casimir-Polder plus mean field potential and predicts the observed saturation. Furthermore, at low incident velocities, the reflected condensates show collective excitations.
Cite
@article{arxiv.cond-mat/0603463,
title = {Low velocity quantum reflection of Bose-Einstein condensates},
author = {T. A. Pasquini and M. Saba and G. Jo and Y. Shin and W. Ketterle and D. E. Pritchard and T. A. Savas and N. Mulders},
journal= {arXiv preprint arXiv:cond-mat/0603463},
year = {2009}
}
Comments
4 figures