English

Bulk-and-edge to corner correspondence

Mesoscale and Nanoscale Physics 2020-10-05 v2 Materials Science Computational Physics

Abstract

We show that two-dimensional band insulators, with vanishing bulk polarization, obey bulk-and-edge to corner charge correspondence stating that the knowledge of the bulk and the two corresponding ribbon band structures uniquely determines the fractional part of the corner charge irrespective of the corner termination. Moreover, physical observables related to macroscopic charge density of a terminated crystal can be obtained by representing the crystal as collection of polarized edge regions with polarizations Pαedge\vec P^\text{edge}_\alpha, where the integer α\alpha enumerates the edges. We introduce a particular manner of cutting a crystal, dubbed "Wannier cut", which allows us to compute Pαedge\vec P^\text{edge}_\alpha. We find that Pαedge\vec P^\text{edge}_\alpha consists of two pieces: the bulk piece expressed via quadrupole tensor of the bulk Wannier functions' charge density, and the edge piece corresponding to the Wannier edge polarization---the polarization of the edge subsystem obtained by Wannier cut. For a crystal with nn edges, out of 2n2n independent components of Pαedge\vec P^\text{edge}_\alpha, only 2n12n-1 are independent of the choice of Wannier cut and correspond to physical observables: corner charges and edge dipoles.

Keywords

Cite

@article{arxiv.2006.16090,
  title  = {Bulk-and-edge to corner correspondence},
  author = {Luka Trifunovic},
  journal= {arXiv preprint arXiv:2006.16090},
  year   = {2020}
}

Comments

published version. v2: application to Benalcazar-Bernevig-Hughes model

R2 v1 2026-06-23T16:42:12.986Z