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具有强层间交换耦合的垂直合成反铁磁体中的异常自旋轨道转矩开关。

Unusual spin-orbit torque switching in perpendicular synthetic antiferromagnets with strong interlayer exchange coupling.

作者信息

Luo Xuming, Wang Yuqiang, Liu Shiqiang, Guo Tengyu, Han Xiufeng, Yu Guoqiang

机构信息

Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, People's Republic of China.

Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, People's Republic of China.

出版信息

J Phys Condens Matter. 2023 Apr 11;35(26). doi: 10.1088/1361-648X/acc711.

Abstract

Synthetic antiferromagnet (SAF) is an outstanding system for controlling magnetic coupling via tuning the layer thickness and material composition. Here, we control the interlayer exchange coupling (IEC) in a perpendicularly magnetized SAF Pt/Co/Ir/CoFeB/MgO multilayer, which is tuned by varying the nonmagnetic layer Ir thickness and the magnetic layer Co thickness. And we study the spin-orbit torque (SOT) driven magnetization switching of the SAF. In the SAF with a weak IEC, the SOT-driven switching behavior is similar to that of a single ferromagnet system, which is dominated by the external magnetic field. In contrast, in the SAF with an ultra-strong IEC, the saturation magnetic field is large than 50 kOe, and the SOT-driven switching behavior is decided by the effective magnetic field. The effective field is correlated to the external magnetic field, the IEC field, magnetic moments of CoFeB and Co, and magnetic anisotropy. These results may advance the understanding of SOT switching of perpendicular SAFs and promote the applications of SAFs with low stray fields and lower power in spintronic devices.

摘要

合成反铁磁体(SAF)是一种通过调整层厚度和材料成分来控制磁耦合的出色体系。在此,我们在垂直磁化的SAF Pt/Co/Ir/CoFeB/MgO多层膜中控制层间交换耦合(IEC),通过改变非磁性层Ir厚度和磁性层Co厚度来对其进行调整。并且我们研究了SAF的自旋轨道矩(SOT)驱动的磁化翻转。在具有弱IEC的SAF中,SOT驱动的翻转行为类似于单铁磁体系统,由外部磁场主导。相比之下,在具有超强IEC的SAF中,饱和磁场大于50 kOe,且SOT驱动的翻转行为由有效磁场决定。有效场与外部磁场、IEC场、CoFeB和Co的磁矩以及磁各向异性相关。这些结果可能会增进对垂直SAF的SOT翻转的理解,并推动具有低杂散场和低功耗的SAF在自旋电子器件中的应用。

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