English

Symmetry-Protected Topological Interfaces and Entanglement Sequences

Strongly Correlated Electrons 2018-08-24 v2 High Energy Physics - Theory

Abstract

Gapped interfaces (and boundaries) of two-dimensional (2D) Abelian topological phases are shown to support a remarkably rich sequence of 1D symmetry-protected topological (SPT) states. We show that such interfaces can provide a physical interpretation for the corrections to the topological entanglement entropy of a 2D state with Abelian topological order found in Ref.~\onlinecite{cano-2015}. The topological entanglement entropy decomposes as γ=γa+γs\gamma = \gamma_a + \gamma_s, where γa>0\gamma_a > 0 only depends on universal topological properties of the 2D state, while a correction γs>0\gamma_s > 0 signals the emergence of the 1D SPT state that is produced by interactions along the entanglement cut and provides a direct measure of the stabilizing symmetry of the resulting SPT state. A correspondence is established between the possible values of γs\gamma_s associated with a given interface - which is named Boundary Topological Entanglement Sequence - and classes of 1D SPT states. We show that symmetry-preserving domain walls along such 1D interfaces (or boundaries) generally host localized parafermion-like excitations that are stable to local symmetry-preserving perturbations.

Keywords

Cite

@article{arxiv.1803.04418,
  title  = {Symmetry-Protected Topological Interfaces and Entanglement Sequences},
  author = {Luiz H. Santos and Jennifer Cano and Michael Mulligan and Taylor L. Hughes},
  journal= {arXiv preprint arXiv:1803.04418},
  year   = {2018}
}
R2 v1 2026-06-23T00:50:21.322Z