English

Quasi-One-Dimensional Higher-Order Topological Insulators

Mesoscale and Nanoscale Physics 2020-06-01 v1 Materials Science Strongly Correlated Electrons Superconductivity

Abstract

Quasi-1D materials Bi4_{4}X4_{4} (X=Br,I) are prototype weak topological insulators (TI) in the β\beta phase. For the α\alpha phases, recent high-throughput database screening suggests that Bi4_{4}Br4_{4} is a rare higher-order TI (HOTI) whereas Bi4_{4}I4_{4} has trivial symmetry indicators. Here we show that in fact the two α\alpha phases are both pristine HOTIs yet with distinct termination-dependent hinge state patterns by performing first-principles calculations, analyzing coupled-edge dimerizations, inspecting surface lattice structures, constructing tight-binding models, and establishing boundary topological invariants. We reveal that the location of inversion center dictates Bi4_{4}Br4_{4} (Bi4_{4}I4_{4}) to feature opposite (the same) dimerizations of a surface or intrinsic (bulk or extrinsic) origin at two side cleavage surfaces. We propose a variety of experiments to examine our predictions. Given the superior hinges along atomic chains, the structural transition at room temperature, and the extreme anisotropies in three axes, our results not only imply the possible existence of many topological materials beyond the scope of symmetry indicators but also establish a new TI paradigm and a unique material platform for exploring the interplay of geometry, symmetry, topology, and interaction.

Keywords

Cite

@article{arxiv.2005.14710,
  title  = {Quasi-One-Dimensional Higher-Order Topological Insulators},
  author = {Chiho Yoon and Cheng-Cheng Liu and Hongki Min and Fan Zhang},
  journal= {arXiv preprint arXiv:2005.14710},
  year   = {2020}
}

Comments

19 pages, 12 figures, 2 tables

R2 v1 2026-06-23T15:54:59.287Z