Vortex liquids and vortex quantum Hall states in trapped rotating Bose gases
Abstract
We discuss the feasibility of quantum Hall states of vortices in trapped low-density two-dimensional Bose gases with large particle interactions. For interaction strengths larger than a critical dimensionless 2D coupling constant , upon increasing the rotation frequency, the system is shown to spatially separate into vortex lattice and melted vortex lattice (vortex liquid) phases. At a first critical frequency, the lattice melts completely, and strongly correlated vortex and particle quantum Hall liquids coexist in inner respectively outer regions of the gas cloud. Finally, at a second critical frequency, the vortex liquid disappears and the strongly correlated particle quantum Hall state fills the whole sample.
Cite
@article{arxiv.cond-mat/0212419,
title = {Vortex liquids and vortex quantum Hall states in trapped rotating Bose gases},
author = {Uwe R. Fischer and Petr O. Fedichev and Alessio Recati},
journal= {arXiv preprint arXiv:cond-mat/0212419},
year = {2007}
}
Comments
11 pages, 3 figures; to appear in J. Phys. B