English

Tunneling-assisted Spin-orbit Coupling in Bilayer Bose-Einstein Condensates

Quantum Gases 2016-08-11 v2

Abstract

Motivated by a goal of realizing spin-orbit coupling (SOC) beyond one-dimension (1D), we propose and analyze a method to generate an effective 2D SOC in bilayer BECs with laser-assisted inter-layer tunneling. We show that an interplay between the inter-layer tunneling, SOC and intra-layer atomic interaction can give rise to diverse ground state configurations. In particular, the system undergoes a transition to a new type of stripe phase which spontaneously breaks the time-reversal symmetry. Different from the ordinary Rashba-type SOC, a fractionalized skyrmion lattice emerges spontaneously in the bilayer system without external traps. Furthermore, we predict the occurrence of a tetracritical point in the phase diagram of the bilayer BECs, where four different phases merge together. The origin of the emerging different phases is elucidated.

Keywords

Cite

@article{arxiv.1403.4338,
  title  = {Tunneling-assisted Spin-orbit Coupling in Bilayer Bose-Einstein Condensates},
  author = {Qing Sun and Lin Wen and W. -M. Liu and G. Juzeliūnas and An-Chun Ji},
  journal= {arXiv preprint arXiv:1403.4338},
  year   = {2016}
}

Comments

12 pages, 8 figures, version published in PRA

R2 v1 2026-06-22T03:28:48.156Z