Nonlinear Hall effect and scaling law in Sb-doped topological insulator MnBi4Te7

Fuente: arXiv
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Main Authors: Wang, Shaoyu, Li, Xiubing, Zhang, Heng, Chen, Bo, Xie, Hangkai, Li, Congcong, Fei, Fucong, Zhang, Shuai, Song, Fengqi
Format: Preprint
Published: 2024
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author Wang, Shaoyu
Li, Xiubing
Zhang, Heng
Chen, Bo
Xie, Hangkai
Li, Congcong
Fei, Fucong
Zhang, Shuai
Song, Fengqi
author_facet Wang, Shaoyu
Li, Xiubing
Zhang, Heng
Chen, Bo
Xie, Hangkai
Li, Congcong
Fei, Fucong
Zhang, Shuai
Song, Fengqi
contents Nonlinear Hall effect (NLHE), as a new member of Hall effect family, has been realized in many materials, attracting a great deal of attention. Here, we report the observation of NLHE in magnetic topological insulator Sb-doped MnBi4Te7 flakes. The NLHE generation efficiency can reach up to 0.06 V^-1, which is comparable to that observed in MnBi2Te4. Differently, the NLHE can survive up to 200 K, much larger than the magnetic transition temperature. We further study the scaling behavior of the NLHE with longitudinal conductivity. The linear relationship with opposite slope when temperature is below and above the magnetic transition temperature is uncovered. It reveals that the NLHE originates from skew scattering. Our work provides a platform to search NLHE with larger generation efficiency at higher temperatures.
format Preprint
id arxiv_https___arxiv_org_abs_2404_06005
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Nonlinear Hall effect and scaling law in Sb-doped topological insulator MnBi4Te7
Wang, Shaoyu
Li, Xiubing
Zhang, Heng
Chen, Bo
Xie, Hangkai
Li, Congcong
Fei, Fucong
Zhang, Shuai
Song, Fengqi
Materials Science
Mesoscale and Nanoscale Physics
Nonlinear Hall effect (NLHE), as a new member of Hall effect family, has been realized in many materials, attracting a great deal of attention. Here, we report the observation of NLHE in magnetic topological insulator Sb-doped MnBi4Te7 flakes. The NLHE generation efficiency can reach up to 0.06 V^-1, which is comparable to that observed in MnBi2Te4. Differently, the NLHE can survive up to 200 K, much larger than the magnetic transition temperature. We further study the scaling behavior of the NLHE with longitudinal conductivity. The linear relationship with opposite slope when temperature is below and above the magnetic transition temperature is uncovered. It reveals that the NLHE originates from skew scattering. Our work provides a platform to search NLHE with larger generation efficiency at higher temperatures.
title Nonlinear Hall effect and scaling law in Sb-doped topological insulator MnBi4Te7
topic Materials Science
Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2404.06005