On the robustness of topological corner modes in photonic crystals
Abstract
We analyze the robustness of corner modes in topological photonic crystals, taking a -symmetric breathing honeycomb photonic crystal as an example. First, we employ topological quantum chemistry and Wilson loop calculations to demonstrate that the topological properties of the bulk crystal stem from an obstructed atomic limit phase. We then characterize the topological corner modes emerging within the gapped edge modes employing a semi-analytical model, determining the appropriate real space topological invariants. For the first time, we provide a detailed account of the effect of long-range interactions on the topological modes in photonic crystals, and we quantify their robustness to perturbations. We conclude that, while photonic long-range interactions inevitably break chiral symmetry, the corner modes are protected by lattice symmetries.
Keywords
Cite
@article{arxiv.2007.10624,
title = {On the robustness of topological corner modes in photonic crystals},
author = {Matthew Proctor and Paloma Arroyo Huidobro and Barry Bradlyn and Maria Blanco de Paz and Maia G. Vergniory and Dario Bercioux and Aitzol Garcia-Etxarri},
journal= {arXiv preprint arXiv:2007.10624},
year = {2021}
}
Comments
v1: 6 pages, 4 figures (supp 10 pages, 3 figures, 1 table)