论文标题

由$α$ -MN触发的磁相变触发的异常大厅效应

Anomalous Hall effect triggered by pressure-induced magnetic phase transition in $α$-Mn

论文作者

Akiba, Kazuto, Iwamoto, Kaisei, Sato, Takaaki, Araki, Shingo, Kobayashi, Tatsuo C.

论文摘要

最近对拓扑性质物理学的拓扑性质的兴趣揭示了浆果曲率在异常大厅效应(AHE)中的重要作用。但是,由于据报道,源自浆果曲率的大厅反应在非常有限的材料中,因此目前尚不清楚详细的机制。在这里,我们报告了由压力诱导的元素$α$ -MN中的磁相变触发的大AHE的发现。在环境压力下,在非连续性抗铁磁相中不存在AHE,而在高压下,在弱铁磁相中观察到大的AHE,尽管平均$ \ sim0.02μ_b$/mn的平均力矩很小。我们的结果表明,AHE在$α$ -MN中的出现受底层磁性结构的对称性,提供了直接证据,表明整个相边界浆果曲率的零和非零贡献之间的切换。 $α$ -MN可以是揭示浆果曲率在AHE中的作用的基本且可调的平台。

Recent interest in topological nature in condensed matter physics has revealed the essential role of Berry curvature in anomalous Hall effect (AHE). However, since large Hall response originating from Berry curvature has been reported in quite limited materials, the detailed mechanism remains unclear at present. Here, we report the discovery of a large AHE triggered by a pressure-induced magnetic phase transition in elemental $α$-Mn. The AHE is absent in the non-collinear antiferromagnetic phase at ambient pressure, whereas a large AHE is observed in the weak ferromagnetic phase under high pressure despite the small averaged moment of $\sim 0.02 μ_B$/Mn. Our results indicate that the emergence of the AHE in $α$-Mn is governed by the symmetry of the underlying magnetic structure, providing a direct evidence of a switch between a zero and non-zero contribution of the Berry curvature across the phase boundary. $α$-Mn can be an elemental and tunable platform to reveal the role of Berry curvature in AHE.

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