Quantum Hall States in Rapidly Rotating Two-Component Bose Gases
Quantum Gases
2012-09-25 v3 Strongly Correlated Electrons
Abstract
We investigate strongly correlated phases of two-component (or pseudo-spin-1/2) Bose gases under rapid rotation through exact diagonalization on a torus geometry. In the case of pseudo-spin-independent contact interactions, we find the formation of gapped spin-singlet states at the filling factors \nu=k/3+k/3 (k/3 filling for each component) with integer k. We present numerical evidences that the gapped state with k=2 is well described as a non-Abelian spin-singlet (NASS) state, in which excitations feature non-Abelian statistics. Furthermore, we find the phase transition from the product of composite fermion states to the NASS state by changing the ratio of the intercomponent to intracomponent interactions.
Keywords
Cite
@article{arxiv.1205.2169,
title = {Quantum Hall States in Rapidly Rotating Two-Component Bose Gases},
author = {Shunsuke Furukawa and Masahito Ueda},
journal= {arXiv preprint arXiv:1205.2169},
year = {2012}
}
Comments
5 pages, 4 figures