In-Plane Anomalous Features in the 3D Quantum Hall Regime
Phys. Rev. Lett. 136, 026602 – Published 14 January, 2026
DOI: https://doi.org/10.1103/qwsp-vrm5
Abstract
Studies of the 3D quantum Hall effect (QHE) have primarily emphasized transport features that mimic the well-established 2D QHE. In this Letter, we show that qualitatively new features arise when an in-plane magnetic field is applied to a 3D Weyl semimetal in the quantum Hall regime. An unexpected Hall quantum oscillation, distinct from the Weyl-orbit oscillation, coexists with the QHE, along with an unquantized two-terminal magnetoresistance. Moreover, longitudinal resistance, always deemed vanishing in QHE or generally positive, peculiarly becomes negative and remains disorder-robust. Quantization tunable by the lead configuration is further found in this transport geometry. A unique type of nonlocal quantum backscattering channels underlies these phenomena. Our Letter demonstrates a breakdown of the topological characterization of transport even with 3D Chern numbers and reveals hidden 3D QHE transport properties. It opens a new class of transport measurements and phenomena.