Three-dimensional quantum anomalous Hall effect in Weyl semimetals
arXiv:2501.01399 · doi:10.1016/j.scib.2025.09.037
Abstract
The quantum anomalous Hall effect (QAHE) is a quantum phenomenon in which a two-dimensional system exhibits a quantized Hall resistance in the absence of magnetic field, where is the Planck constant and is the electron charge. In this work, we extend this novel phase to three dimensions and thus propose a three-dimensional QAHE exhibiting richer and more versatile transport behaviors. We first confirm this three-dimensional QAHE through the quantized Chern number, then establish its bulk-boundary correspondence, and finally reaffirm it via the distinctive transport properties. Remarkably, we find that the three-dimensional QAHE hosts two chiral surface states along one spatial direction while a pair of chiral hinge states along another direction, and the location of the hinge states depends sensitively on the Fermi energy. These two types of boundary states are further connected through a perpendicular chiral surface states, whose chirality is also Fermi energy dependent. Consequently, depending on the transport direction, its Hall resistance can quantize to , , or when the Fermi energy is tuned across the charge neutral point. This three-dimensional QAHE not only fill the gap in the Hall effect family but also holds significant potentials in device applications such as in-memory computing.
4 pages, 2 figures
References in corpus (11)
- Topological Insulators
- Topological insulators and superconductors
- Electronic Structure of Pyrochlore Iridates: From Topological Dirac Metal to Mott Insulator
- Discovery of a Weyl Fermion Semimetal and Topological Fermi Arcs
- Colloquium: Quantum anomalous Hall effect
- Discovery of Weyl fermion semimetals and topological Fermi arc states
- Three-dimensional quantum Hall effect and metal-insulator transition in ZrTe5
- 3D quantum Hall effect of Fermi arcs in topological semimetals
- Three-Dimensional Quantum Anomalous Hall Effect in Ferromagnetic Insulators
- 3D Quantum Anomalous Hall Effect in Hyperhoneycomb Lattices
- Three-Dimensional Quantum Anomalous Hall Effect in Magnetic Topological Insulator Trilayers of Hundred-Nanometer Thickness