Topological Edge and Interface states at Bulk disorder-to-order Quantum Critical Points
Abstract
We study the interplay between two nontrivial boundary effects: (1) the two dimensional () edge states of three dimensional () strongly interacting bosonic symmetry protected topological states, and (2) the boundary fluctuations of bulk disorder-to-order phase transitions. We then generalize our study to gapless states localized at an interface embedded in a bulk, when the bulk undergoes a quantum phase transition. Our study is based on generic long wavelength descriptions of these systems and controlled analytic calculations. Our results are summarized as follows: () The edge state of a prototype bosonic symmetry protected states can be driven to a new fixed point by coupling to the boundary fluctuations of a bulk quantum phase transition; () the states localized at a interface of a SU(N) quantum antiferromagnet may be driven to a new fixed point by coupling to the bulk quantum critical modes. Properties of the new fixed points identified are also studied.
Keywords
Cite
@article{arxiv.2002.10479,
title = {Topological Edge and Interface states at Bulk disorder-to-order Quantum Critical Points},
author = {Yichen Xu and Xiao-Chuan Wu and Chao-Ming Jian and Cenke Xu},
journal= {arXiv preprint arXiv:2002.10479},
year = {2020}
}
Comments
8 pages, 7 figures