Vortices in spinor cold exciton condensates with spin-orbit interaction
Mesoscale and Nanoscale Physics
2014-01-15 v2 Quantum Gases
Abstract
We study theoretically the ground states of topological defects in a spinor four-component condensate of cold indirect excitons. We analyze possible ground state solutions for different configurations of vortices and half-vortices. We show that if only Rashba or Dreselhaus spin-orbit interaction (SOI) for electrons is present the stable states of topological defects can represent a cylindrically symmetric half-vortex or half vortex-antivortex pairs, or a non-trivial pattern with warped vortices. In the presence of both of Rashba and Dresselhaus SOI the ground state of a condensate represents a stripe phase and vortex type solutions become unstable.
Keywords
Cite
@article{arxiv.1310.0877,
title = {Vortices in spinor cold exciton condensates with spin-orbit interaction},
author = {H. Sigurdsson and T. C. H. Liew and O. Kyriienko and I. A. Shelykh},
journal= {arXiv preprint arXiv:1310.0877},
year = {2014}
}