Chern Vector Protected Three-dimensional Quantized Hall Effect
Abstract
Recently, Chern vector with arbitrary formula in three-dimensional systems has been experimentally realized [\B{Nature 609, 925 (2022)}]. Motivated by these progresses, we propose the Chern vector -protected quantized Hall effect in three-dimensional systems. By examining samples with Chern vector and dimensions and along the - and -directions, we demonstrate a topologically protected two-terminal response. This response can be reformulated as the sum of the transmission coefficients along the - and -directions, given by . When applied to Hall bar setups, this topological mechanism gives rise to quantized Hall conductances, such as and , which are expressed by . These Hall conductances exhibit a clear dependency on sample dimensions, illuminating the intrinsic three-dimensional nature. Finally, we propse potential candidates for experimental realization. Our findings not only deepen the understanding of the topological nature of Chern vectors but also enlighten the exploration of their transport properties.
Cite
@article{arxiv.2501.14493,
title = {Chern Vector Protected Three-dimensional Quantized Hall Effect},
author = {Zhi-Qiang Zhang and Shu-Guang Cheng and Hongfang Liu and Hailong Li and Hua Jiang and X. C. Xie},
journal= {arXiv preprint arXiv:2501.14493},
year = {2025}
}