Chern-Simons Theory and Wilson Loops in the Brillouin Zone
Mesoscale and Nanoscale Physics
2017-03-29 v3 Superconductivity
High Energy Physics - Theory
Abstract
Berry connection is conventionally defined as a static gauge field in the Brillouin zone. Here we show that for three-dimensional (3d) time-reversal invariant superconductors, a generalized Berry gauge field behaves as a fluctuating field of a Chern-Simons gauge theory. The gapless nodal lines in the momentum space play the role of Wilson loop observables, while their linking and knot invariants modify the gravitational theta angle. This angle induces a topological gravitomagnetoelectric effect where a temperature gradient induces a rotational energy flow. We also show how topological strings may be realized in the 6 dimensional phase space, where the physical space defects play the role of topological D-branes.
Keywords
Cite
@article{arxiv.1610.05810,
title = {Chern-Simons Theory and Wilson Loops in the Brillouin Zone},
author = {Biao Lian and Cumrun Vafa and Farzan Vafa and Shou-Cheng Zhang},
journal= {arXiv preprint arXiv:1610.05810},
year = {2017}
}
Comments
14 pages, 2 figures