English

Spin fragmentation of Bose-Einstein condensates with antiferromagnetic interactions

Quantum Gases 2014-12-19 v1

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 m=0m=0 state along the field direction. We calculate the average value and variance of the Zeeman state m=0m=0 to illustrate clearly the crossover from a fragmented to an unfragmented state. The typical width of this crossover is qkBT/Nq \sim k_B T/N, where qq is the QZ energy, TT the spin temperature and NN the atom number. This shows that spin fluctuations are a mesoscopic effect that will not survive in the thermodynamic limit NN\rightarrow \infty, but are observable for sufficiently small atom number.

Keywords

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

R2 v1 2026-06-22T00:44:19.771Z