Observation of Flat Bands in Type-II Weyl Semimetal TaRhTe$_{4}$
Abstract
Flat bands have been theoretically predicted for decades but have only recently been realized in quantum materials such as magic-angle twisted bilayer graphene, kagome and Lieb lattices, and rare-earth metal compounds. To date, only twisted layered materials have enabled tuning of flat-band energies near the electronic chemical potential, thereby influencing transport and thermodynamic properties. Here, we report the presence of flat bands near the chemical potential in bulk TaRhTe, a noncentrosymmetric van-der Waals type-II Weyl semimetal. Flat bands are rarely observed in Weyl semimetals, particularly in nonmagnetic bulk systems, and the observed flat bands were not predicted by density functional theory calculations. TaRhTe therefore provides a platform in which nontrivial topology coexists with flat bands near the Fermi level, as evidenced by our angle-resolved photoemission spectroscopy measurements.
Keywords
Cite
@article{arxiv.2607.01186,
title = {Observation of Flat Bands in Type-II Weyl Semimetal TaRhTe$_{4}$},
author = {Harry Rankin and Tyler J. Slade and Benjamin Schrunk and Yevhen Kushnirenko and Andrew Eaton and K. U. R. R. S. Rathnayaka and Maxwell Doyle and Lin-Lin Wang and Paul C. Canfield and Adam Kaminski},
journal= {arXiv preprint arXiv:2607.01186},
year = {2026}
}
Comments
13 pages, 5 figures, 1 table