Three-Dimensional Quantum Hall Effect in Topological Amorphous Metals

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Wang, Jiong-Hao, Xu, Yong
Format: Preprint
Published: 2023
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866909600134987776
author Wang, Jiong-Hao
Xu, Yong
author_facet Wang, Jiong-Hao
Xu, Yong
contents Weyl semimetals have been theoretically predicted to become topological metals with anomalous Hall conductivity in amorphous systems. However, measuring the anomalous Hall conductivity in realistic materials, particularly those with multiple pairs of Weyl points, is a significant challenge. If a system respects time-reversal symmetry, then the anomalous Hall conductivity even vanishes. As such, it remains an open question how to probe the Weyl band like topology in amorphous materials. Here, we theoretically demonstrate that, under magnetic fields, a topological metal slab in amorphous systems exhibits three-dimensional quantum Hall effect, even in time-reversal invariant systems, thereby providing a feasible approach to exploring Weyl band like topology in amorphous materials. We unveil the topological origin of the quantized Hall conductance by calculating the Bott index. The index is carried by broadened Landau levels with bulk states spatially localized except at critical transition energies.The topological property also results in edge states localized at distinct hinges on two opposite surfaces.
format Preprint
id arxiv_https___arxiv_org_abs_2309_05990
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Three-Dimensional Quantum Hall Effect in Topological Amorphous Metals
Wang, Jiong-Hao
Xu, Yong
Mesoscale and Nanoscale Physics
Disordered Systems and Neural Networks
Weyl semimetals have been theoretically predicted to become topological metals with anomalous Hall conductivity in amorphous systems. However, measuring the anomalous Hall conductivity in realistic materials, particularly those with multiple pairs of Weyl points, is a significant challenge. If a system respects time-reversal symmetry, then the anomalous Hall conductivity even vanishes. As such, it remains an open question how to probe the Weyl band like topology in amorphous materials. Here, we theoretically demonstrate that, under magnetic fields, a topological metal slab in amorphous systems exhibits three-dimensional quantum Hall effect, even in time-reversal invariant systems, thereby providing a feasible approach to exploring Weyl band like topology in amorphous materials. We unveil the topological origin of the quantized Hall conductance by calculating the Bott index. The index is carried by broadened Landau levels with bulk states spatially localized except at critical transition energies.The topological property also results in edge states localized at distinct hinges on two opposite surfaces.
title Three-Dimensional Quantum Hall Effect in Topological Amorphous Metals
topic Mesoscale and Nanoscale Physics
Disordered Systems and Neural Networks
url https://arxiv.org/abs/2309.05990