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外延 Ru/CoFeAl/MgO 异质结构中磁各向异性的电压控制。

Voltage control of magnetic anisotropy in epitaxial Ru/CoFeAl/MgO heterostructures.

机构信息

National Institute for Materials Science (NIMS), Tsukuba 305-0047, Japan.

Center for Spintronics Research Network (CSRN), Tohoku University, Sendai 980-8577, Japan.

出版信息

Sci Rep. 2017 Mar 23;7:45026. doi: 10.1038/srep45026.

Abstract

Voltage control of magnetic anisotropy (VCMA) in magnetic heterostructures is a key technology for achieving energy-efficiency electronic devices with ultralow power consumption. Here, we report the first demonstration of the VCMA effect in novel epitaxial Ru/CoFeAl(CFA)/MgO heterostructures with interfacial perpendicular magnetic anisotropy (PMA). Perpendicularly magnetized tunnel junctions with the structure of Ru/CFA/MgO were fabricated and exhibited an effective voltage control on switching fields for the CFA free layer. Large VCMA coefficients of 108 and 139 fJ/Vm for the CFA film were achieved at room temperature and 4 K, respectively. The interfacial stability in the heterostructure was confirmed by repeating measurements. Temperature dependences of both the interfacial PMA and the VCMA effect were also investigated. It is found that the temperature dependences follow power laws of the saturation magnetization with an exponent of ~2, where the latter is definitely weaker than that of conventional Ta/CoFeB/MgO. The significant VCMA effect observed in this work indicates that the Ru/CFA/MgO heterostructure could be one of the promising candidates for spintronic devices with voltage control.

摘要

在磁异质结构中实现磁场各向异性的电压控制(VCMA)是实现超低功耗节能电子设备的关键技术。在此,我们首次报道了具有界面垂直各向异性(PMA)的新型外延 Ru/CoFeAl(CFA)/MgO 异质结构中 VCMA 效应的首次演示。我们制备了结构为 Ru/CFA/MgO 的垂直磁化隧道结,并表现出对 CFA 自由层的切换场的有效电压控制。在室温下和 4 K 下,CFA 薄膜的 VCMA 系数分别达到了 108 和 139 fJ/Vm。通过重复测量证实了异质结构中的界面稳定性。还研究了界面 PMA 和 VCMA 效应的温度依赖性。结果发现,两者的温度依赖性均遵循饱和磁化强度的幂律,指数约为 2,后者明显弱于传统的 Ta/CoFeB/MgO。在这项工作中观察到的显著 VCMA 效应表明,Ru/CFA/MgO 异质结构可能是具有电压控制的自旋电子器件的有前途的候选者之一。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d796/5362931/0fdc3e5e0322/srep45026-f1.jpg

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