SU(3) Spin-Orbit Coupling in Systems of Ultracold Atoms release_z2uocqwmvzginptc3zdamnylmu

by Ryan Barnett, G. R. Boyd, Victor Galitski

Released as a article .

2012  

Abstract

Motivated by the recent experimental success in realizing synthetic spin-orbit coupling in ultracold atomic systems, we consider N-component atoms coupled to a non-Abelian SU(N) gauge field. More specifically, we focus on the case, referred to here as "SU(3) spin-orbit-coupling," where the internal states of three-component atoms are coupled to their momenta via a matrix structure that involves the Gell-Mann matrices (in contrast to the Pauli matrices in conventional SU(2) spin-orbit-coupled systems). It is shown that the SU(3) spin-orbit-coupling gives rise to qualitatively different phenomena and in particular we find that even a homogeneous SU(3) field on a simple square lattice enables a topologically non-trivial state to exist, while such SU(2) systems always have trivial topology. In deriving this result, we first establish an exact equivalence between the Hofstadter model with a 1/N Abelian flux per plaquette and a homogeneous SU(N) non-Abelian model. The former is known to have a topological spectrum for N>2, which is thus inherited by the latter. It is explicitly verified by an exact calculation for N=3, where we develop and use a new algebraic method to calculate topological indices in the SU(3) case. Finally, we consider a strip geometry and establish the existence of three gapless edge states -- the hallmark feature of such an SU(3) topological insulator.
In text/plain format

Archived Files and Locations

application/pdf   794.9 kB
file_n4wl3qmtljc2flpflerze6bk7m
arxiv.org (repository)
web.archive.org (webarchive)
application/pdf   788.7 kB
file_uhwe67urdfg4pl6tz4ukgbllbm
archive.org (archive)
Read Archived PDF
Preserved and Accessible
Type  article
Stage   accepted
Date   2012-12-05
Version   v2
Language   en ?
arXiv  1207.1728v2
Work Entity
access all versions, variants, and formats of this works (eg, pre-prints)
Catalog Record
Revision: 0ac23e7d-a6c4-45ef-ae91-48d2f0e4d3d5
API URL: JSON