反铁磁性
凝聚态物理
自旋(空气动力学)
材料科学
扭矩
轨道(动力学)
物理
热力学
工程类
航空航天工程
作者
Arnab Bose,Tom G. Saunderson,Aga Shahee,Lichuan Zhang,Tetsuya Hajiri,Adithya Rajan,Durgesh Kumar,Dongwook Go,H. Asano,Udo Schwingenschlögl,Aurélien Manchon,Yuriy Mokrousov,Mathias Kläui
出处
期刊:Nano Letters
[American Chemical Society]
日期:2025-05-12
被引量:1
标识
DOI:10.1021/acs.nanolett.4c05423
摘要
We report strong spin-orbit torques (SOTs) generated by noncollinear antiferromagnets Mn3Ni0.35Cu0.65N, over a wide temperature range. The SOT efficiency peaks up to 0.3 at the Néel temperature (TN), substantially higher than that of commonly studied nonmagnets, such as Pt. The sign and magnitude of the SOTs measured in our experiments are corroborated by density functional theory, confirming the dominance of the orbital Hall effect over the spin Hall effect in the nonmagnetic phase above TN. In contrast, the strong temperature-dependent SOTs observed around and below TN can be explained by recently developed mechanisms involving chirality-induced and extrinsic scattering-driven spin and orbital currents, considering the effect of spin fluctuations at finite temperatures. Our work not only reports a large magnitude of SOT but also sheds light on a new possible origin where orbital currents can be harnessed by leveraging the chirality of noncollinear antiferromagnets, which holds promise for magnetic memory applications.
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