Symmetry-protected cubic-touching topological surface bands with tunable singularities
Strongly Correlated Electrons
2026-07-21 v1
Abstract
We propose a class of topological surface bands in three-dimensional topological crystalline insulators that have symmetry-protected cubic-order band touching. Within the symmetry constraint, the band dispersion can continuously vary between cubic dispersion, moat band and multi-mini-valley structure with van Hove singularities by adjusting particle-hole asymmetry and anisotropy. Thus, there is a family of tunable density-of-state singularities ranging from power-law to logarithmic divergences. This offrs a versatile platform for engineering strongly correlated phases of matter in topological surface states. We provide an example realization in a prism-lattice tight-binding model of angular-momentum-3/2 electrons.
Cite
@article{arxiv.2607.19265,
title = {Symmetry-protected cubic-touching topological surface bands with tunable singularities},
author = {Jingtian Shi and Taylor L. Hughes and Ivar Martin},
journal= {arXiv preprint arXiv:2607.19265},
year = {2026}
}