论文标题

抗铁磁轴承绝缘子候选euin $ _2 $ as $ _2 $

Field-induced Topological Hall effect in antiferromagnetic axion insulator candidate EuIn$_2$As$_2$

论文作者

Yan, J., Jiang, Z. Z., Xiao, R. C., Lu, W. J., Song, W. H., Zhu, X. B., Luo, X., Sun, Y. P., Yamashita, M.

论文摘要

磁性拓扑材料由于潜在地实现了各种新型量子现象而引起了极大的关注。 Euin $ _2 $ AS $ _2 $最近被理论上被认为是期待已久的内在抗磁性散装轴承绝缘子。但是,该材料中拓扑状态引起的运输特性的实验研究很少。在本文中,我们执行详细的磁磁性(MR)和HALL测量值来研究该材料的磁转运性能。我们发现,传输受到欧盟矩的自旋构型的强烈影响,这是由于MR的田间依赖性的随之变化以及néel温度以下的磁化强度的变化。最重要的是,观察到异常的大厅效应(AHE)和大型拓扑厅效应(The)。我们建议AHE源于由于螺旋旋转结构而导致的非变化净浆果曲率,并且归因于形成的非稳态旋转纹理,其具有有限的标量自旋手性,由Euin $ _2 $ as $ _2 $的外部磁场引起的有限标量旋转手性。我们的研究提供了一个平台,以了解电子带的拓扑与磁性磁结构对磁电运输特性之间的相互作用的影响。此外,我们的观察结果提示通过操纵Euin $ _2 $的磁状态为$ _2 $,以实现轴突绝缘子状态和高阶拓扑绝缘子状态。

The magnetic topological materials have attracted significant attention due to their potential realization of variety of novel quantum phenomena. EuIn$_2$As$_2$ has recently been theoretically recognized as a long awaited intrinsic antiferromagnetic bulk axion insulator. However, the experimental study on transport properties arising from the topological states in this material is scarce. In this paper, we perform the detailed magnetoresistance (MR) and Hall measurements to study the magnetotransport properties of this material. We find that the transport is strongly influenced by the spin configuration of the Eu moments from the concomitant change in the field dependence of the MR and that of the magnetization below the Néel temperature. Most importantly, an anomalous Hall effect (AHE) and a large topological Hall effect (THE) are observed. We suggest that the AHE is originated from a nonvanishing net Berry curvature due to the helical spin structure and that the THE is attributed to the formation of a noncoplanar spin texture with a finite scalar spin chirality induced by the external magnetic field in EuIn$_2$As$_2$. Our studies provide a platform to understand the influence of the interplay between the topology of electronic bands and the field-induced magnetic structure on magnetoelectric transport properties. In addition, our observations give a hint to realize axion insulator states and high-order topological insulator states through manipulating the magnetic state of EuIn$_2$As$_2$.

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