Selective bulk-boundary correspondence in higher-order topological insulators with anticommuting mirror and chiral symmetries
Phys. Rev. B 114, 165133 – Published 23 September, 2026
DOI: https://doi.org/10.1103/8131-lbc3
Abstract
We investigate higher-order topological insulators protected by chiral and anticommuting mirror symmetries. Using models in the BDI class, which include the prototypical topological quadrupole insulator, we show that breaking mirror symmetries that anticommute with the chiral operator leads to edge-selective bulk-boundary correspondence, with gap closings and bound states appearing only along a subset of boundaries of the same orientation and codimension. We define an edge-resolved topological invariant that distinguishes this mechanism from previous reports of termination-induced or chiral-symmetry-breaking edge-selection effects.