English

Global phase diagram of two-component Bose gases in antiparallel magnetic fields

Quantum Gases 2014-09-08 v2 Strongly Correlated Electrons

Abstract

We study the ground-state phase diagram of two-dimensional two-component (or pseudospin-1/2) Bose gases in mutually antiparallel synthetic magnetic fields in the space of the total filling factor and the ratio of the intercomponent coupling gg_{\uparrow\downarrow} to the intracomponent one g>0. This time-reversal-invariant setting represents a bosonic analogue of spin Hall systems. Using exact diagonalization, we find that (fractional) quantum spin Hall states composed of a pair of nearly independent quantum Hall states are remarkably robust and persist for gg_{\uparrow\downarrow} up to as large as g. For g=gg_{\uparrow\downarrow}=-g, we find the exact many-body ground state in which particles in different spin states form pairs. This gives the exact critical line beyond which the system collapses.

Keywords

Cite

@article{arxiv.1402.6860,
  title  = {Global phase diagram of two-component Bose gases in antiparallel magnetic fields},
  author = {Shunsuke Furukawa and Masahito Ueda},
  journal= {arXiv preprint arXiv:1402.6860},
  year   = {2014}
}

Comments

12 pages, 14 figures. To be published in Physical Review A