Spin fragmentation of Bose-Einstein condensates with antiferromagnetic interactions
Abstract
We study spin fragmentation of an antiferromagnetic spin 1 condensate in the presence of a quadratic Zeeman (QZ) effect breaking spin rotational symmetry. We describe how the QZ effect turns a fragmented spin state, with large fluctuations of the Zeemans populations, into a regular polar condensate, where atoms all condense in the state along the field direction. We calculate the average value and variance of the Zeeman state to illustrate clearly the crossover from a fragmented to an unfragmented state. The typical width of this crossover is , where is the QZ energy, the spin temperature and the atom number. This shows that spin fluctuations are a mesoscopic effect that will not survive in the thermodynamic limit , but are observable for sufficiently small atom number.
Cite
@article{arxiv.1307.0744,
title = {Spin fragmentation of Bose-Einstein condensates with antiferromagnetic interactions},
author = {Luigi De Sarlo and Lingxuan Shao and Vincent Corre and Tilman Zibold and David Jacob and Jean Dalibard and Fabrice Gerbier},
journal= {arXiv preprint arXiv:1307.0744},
year = {2014}
}
Comments
submitted to NJP