"Fermionization" of Rotating Spin-1 Bose Clusters
Abstract
We propose a simple scheme of generating rotating atomic clusters in an optical lattices which produces states with quantum Hall and spin liquid properties. As the rotation frequencies increases, the ground state of a rotating cluster of spin-1 Bose atoms undergoes a sequence of (spin and orbit) transitions, which terminates at an angular momentum substantially lower than that of the boson Laughlin state. The spin-orbit correlations reflect "fermionization" of bosons facilitated by their spin degrees of freedom. We also show that the density of an expanding group of clusters has a scaling form which reflects the quantum Hall and the spin structure of a single cluster.
Cite
@article{arxiv.cond-mat/0203143,
title = {"Fermionization" of Rotating Spin-1 Bose Clusters},
author = {Tin-Lun Ho and Erich J Mueller},
journal= {arXiv preprint arXiv:cond-mat/0203143},
year = {2007}
}
Comments
4 pages, 2 figures, revtex3, psfrag; Revised May 7, 2002 -- version accepted by PRL