Superconductivity in Mutual Chern-Simons Gauge Theory
Abstract
In this work, we present a topological characterization of superconductivity in a prototype electron fractionalization model for doped Mott insulators. In this model, spinons and holons are coupled via the mutual Chern-Simons gauge fields. We obtain a low-lying effective description of the collective current fluctuations by integrating out the matter fields, which replaces the conventional Ginzburg-Landau action to describe the generalized rigidity of superconductivity. The superconducting phase coherence is essentially characterized by a topological order parameter related to a Gaussian linking number, and an experiment is proposed to probe this topological property. We further show that a gauge-neutral fermionic mode can naturally emerge in this model, which behaves like a Bogoliubov quasiparticle.
Cite
@article{arxiv.1110.0125,
title = {Superconductivity in Mutual Chern-Simons Gauge Theory},
author = {Peng Ye and Long Zhang and Zheng-Yu Weng},
journal= {arXiv preprint arXiv:1110.0125},
year = {2012}
}
Comments
13 pages, 5 figures