English

Asymmetric real topology of conduction and valence bands

Mesoscale and Nanoscale Physics 2025-07-16 v2

Abstract

Previously, it was believed that conduction and valence bands exhibit a symmetry: They possess opposite topological invariants (e.g., the Chern numbers of conduction and valence bands for the Chern insulator are ±C\pm C). However, we present a counterexample: The second Stiefel-Whitney numbers for conduction and valence bands over the Klein bottle may be asymmetric, with one being nontrivial while the other trivial. Here, the Stiefel-Whitney classes are the characteristic classes for real Bloch functions under PTPT symmetry with (PT)2=1(PT)^2=1, and the Klein bottle is the momentum-space unit under the projective anticommutation relation of the mirror reflection reversing xx and the translation along the yy direction. The asymmetry originates from the algebraic difference of real cohomology classes over the Klein bottle and torus. This discovery is rooted in the foundation of topological band theory, and has the potential to fundamentally refresh our current understanding of topological phases.

Keywords

Cite

@article{arxiv.2504.09524,
  title  = {Asymmetric real topology of conduction and valence bands},
  author = {J. X. Dai and Chen Zhang and Y. X. Zhao},
  journal= {arXiv preprint arXiv:2504.09524},
  year   = {2025}
}