Investigating the origin of topological-Hall-like resistivity in Zn-doped Mn2Sb ferrimagnet

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Hauptverfasser: Yu, BoCheng, Jiang, JiaLiang, Meng, Jing, Zhu, XiaoYan, Ma, Jie, Du, HaiFeng, Zhan, QingFeng, Tang, Jin, Xu, Yang, Shang, Tian
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Veröffentlicht: 2025
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author Yu, BoCheng
Jiang, JiaLiang
Meng, Jing
Zhu, XiaoYan
Ma, Jie
Du, HaiFeng
Zhan, QingFeng
Tang, Jin
Xu, Yang
Shang, Tian
author_facet Yu, BoCheng
Jiang, JiaLiang
Meng, Jing
Zhu, XiaoYan
Ma, Jie
Du, HaiFeng
Zhan, QingFeng
Tang, Jin
Xu, Yang
Shang, Tian
contents Skyrmions and other chiral spin textures have been extensively studied as potential building blocks for novel spintronic devices. Hall-resistivity anomalies that deviate from magnetization scaling, known as the topological Hall effect, have been widely employed as evidence for the presence of chiral spin textures in magnetic materials. However, recent studies on magnetic thin films have revealed a drawback of this approach, as the presumed topological Hall contribution may in fact originate from trivial mechanisms. Here, we investigate the magnetic and transport properties of a Zn-doped Mn2Sb ferrimagnet, whose related compounds have previously been suggested to exhibit a topological Hall effect arising from chiral spin textures. Hall-resistivity anomalies are also observed in our sample, yet they show little correlation with the magnetic or metamagnetic transitions and are therefore clearly distinct from those in magnetic compounds hosting chiral spin textures. Most importantly, additional Lorentz transmission electron microscopy measurements rule out the existence of chiral spin textures in this ferrimagnet. Therefore, instead of a nontrivial origin, we attribute the Hall-resistivity anomalies to the combined effect of multiple anomalous Hall channels resulting from sample inhomogeneity. Our work shows that the difficulties of identifying chiral spin textures through transport measurements also apply to bulk systems, prompting some existing results to be revisited.
format Preprint
id arxiv_https___arxiv_org_abs_2512_10285
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Investigating the origin of topological-Hall-like resistivity in Zn-doped Mn2Sb ferrimagnet
Yu, BoCheng
Jiang, JiaLiang
Meng, Jing
Zhu, XiaoYan
Ma, Jie
Du, HaiFeng
Zhan, QingFeng
Tang, Jin
Xu, Yang
Shang, Tian
Strongly Correlated Electrons
Materials Science
Skyrmions and other chiral spin textures have been extensively studied as potential building blocks for novel spintronic devices. Hall-resistivity anomalies that deviate from magnetization scaling, known as the topological Hall effect, have been widely employed as evidence for the presence of chiral spin textures in magnetic materials. However, recent studies on magnetic thin films have revealed a drawback of this approach, as the presumed topological Hall contribution may in fact originate from trivial mechanisms. Here, we investigate the magnetic and transport properties of a Zn-doped Mn2Sb ferrimagnet, whose related compounds have previously been suggested to exhibit a topological Hall effect arising from chiral spin textures. Hall-resistivity anomalies are also observed in our sample, yet they show little correlation with the magnetic or metamagnetic transitions and are therefore clearly distinct from those in magnetic compounds hosting chiral spin textures. Most importantly, additional Lorentz transmission electron microscopy measurements rule out the existence of chiral spin textures in this ferrimagnet. Therefore, instead of a nontrivial origin, we attribute the Hall-resistivity anomalies to the combined effect of multiple anomalous Hall channels resulting from sample inhomogeneity. Our work shows that the difficulties of identifying chiral spin textures through transport measurements also apply to bulk systems, prompting some existing results to be revisited.
title Investigating the origin of topological-Hall-like resistivity in Zn-doped Mn2Sb ferrimagnet
topic Strongly Correlated Electrons
Materials Science
url https://arxiv.org/abs/2512.10285