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钕钴合金中自旋重取向转变和温度依赖性磁晶各向异性的扭矩磁力测量研究

Torque magnetometry study of the spin reorientation transition and temperature-dependent magnetocrystalline anisotropy in NdCo.

作者信息

Kumar Santosh, Patrick Christopher E, Edwards Rachel S, Balakrishnan Geetha, Lees Martin R, Staunton Julie B

机构信息

Department of Physics, University of Warwick, Coventry CV4 7AL, United Kingdom.

出版信息

J Phys Condens Matter. 2020 Mar;32(25):255802. doi: 10.1088/1361-648X/ab7ad6.

Abstract

We present the results of torque magnetometry and magnetic susceptibility measurements to study in detail the spin reorientation transition (SRT) and magnetic anisotropy in the permanent magnet NdCo. We further show simulations of the measurements using first-principles calculations based on density-functional theory and the disordered local moment picture of magnetism at finite temperatures. The good agreement between theory and experimental data leads to a detailed description of the physics underpinning the SRT. In particular we are able to resolve the magnetization of, and to reveal a canting between, the Nd and Co sublattices. The torque measurements carried out in the ac and ab planes near the easy direction allow us to estimate the anisotropy constants, K , K and K and their temperature dependences. Torque curves, τ(γ) recorded by varying the direction of a constant magnetic field in the crystallographic ac plane show a reversal in the polarity as the temperature is changed across the SRT (240 < T < 285 K). Within this domain, τ(γ) exhibits unusual features different to those observed above and below the transition. The single crystals of NdCo were grown using the optical floating zone technique.

摘要

我们展示了扭矩磁力测量和磁化率测量的结果,以详细研究永磁体钕钴中的自旋重取向转变(SRT)和磁各向异性。我们还展示了基于密度泛函理论的第一性原理计算以及有限温度下磁性的无序局域矩图像对测量结果的模拟。理论与实验数据之间的良好一致性使得对SRT背后的物理机制有了详细描述。特别是,我们能够解析钕和钴亚晶格的磁化,并揭示它们之间的倾斜。在易磁化方向附近的交流平面和ab平面中进行的扭矩测量使我们能够估计各向异性常数K、K 和K 及其温度依赖性。通过在晶体学ac平面中改变恒定磁场的方向记录的扭矩曲线τ(γ)表明,随着温度在SRT(240 < T < 285 K)范围内变化,极性会发生反转。在此范围内,τ(γ)表现出与转变温度之上和之下观察到的不同寻常的特征。钕钴单晶是使用光学浮区技术生长的。

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