Realization of 2D Spin-orbit Interaction and Exotic Topological Orders in Cold Atoms
Abstract
Majorana zero bound mode exists in the vortex core of a chiral superconductor or superfluid, which can be driven from an s-wave pairing state by two-dimensional (2D) spin-orbit (SO) coupling. We propose here a novel scheme based on realistic cold atom platforms to generate 2D SO interactions in a blue-detuned square optical lattice, and predict both the quantum anomalous Hall effect and chiral topological superfluid phase in the experimentally accessible parameter regimes. This work opens a new direction with experimental feasibility to observe non-Abelian topological orders in cold atom systems.
Keywords
Cite
@article{arxiv.1304.0291,
title = {Realization of 2D Spin-orbit Interaction and Exotic Topological Orders in Cold Atoms},
author = {Xiong-Jun Liu and K. T. Law and T. K. Ng},
journal= {arXiv preprint arXiv:1304.0291},
year = {2014}
}
Comments
4+pages, 3 figures; supplementary material is added to provide all details of the model realization based on experimental data of realistic cold atoms