Edge--Entanglement correspondence for gapped topological phases with symmetry
Abstract
The correspondence between the edge theory and the entanglement spectrum is firmly established for the chiral topological phases. We study gapped, topologically ordered, non-chiral states with a conserved charge and show that the entanglement Hamiltonian contains not only the information about topologically distinct edges such phases may admit, but also which of them will be realized in the presence of symmetry breaking/conserving perturbations. We introduce an exactly solvable, charge conserving lattice model of a spin liquid and derive its edge theory and the entanglement Hamiltonian, also in the presence of perturbations. We construct a field theory of the edge and study its RG flow. We show the precise extent of the correspondence between the information contained in the entanglement Hamiltonian and the edge theory.
Keywords
Cite
@article{arxiv.1612.02831,
title = {Edge--Entanglement correspondence for gapped topological phases with symmetry},
author = {Maciej Koch-Janusz and Kusum Dhochak and Erez Berg},
journal= {arXiv preprint arXiv:1612.02831},
year = {2017}
}
Comments
14 pages, 4 figures