Topologically protected interface modes in multi-band damped lattice models
Abstract
Tridiagonal -Toeplitz operators provide a natural framework for modelling one-dimensional -periodic lattice systems. A fundamental connection is obtained between Coburn's lemma for tridiagonal -Toeplitz operators and the existence of edge modes. We reveal that topological edge modes are characterised by the eigenvalues of the leading principal submatrix of the symbol function. A complete analysis of tridiagonal interface operators satisfying global inversion symmetry is then presented. These results are applied to finite one-dimensional -periodic chains of damped resonators that satisfy both local and global inversion symmetry. Additionally, disordered tight-binding interface operators are shown to support a topologically robust zero-energy interface state. Numerical simulations are conducted to illustrate the theoretical findings.
Keywords
Cite
@article{arxiv.2604.20818,
title = {Topologically protected interface modes in multi-band damped lattice models},
author = {Yannick de Bruijn and Erik Orvehed Hiltunen},
journal= {arXiv preprint arXiv:2604.20818},
year = {2026}
}
Comments
24 pages, 12 Figures