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接近补偿温度时非共线亚铁磁体钆铁石榴石(GdIG)中的自旋霍尔磁电阻。

Spin Hall magnetoresistance in the non-collinear ferrimagnet GdIG close to the compensation temperature.

作者信息

Dong Bo-Wen, Cramer Joel, Ganzhorn Kathrin, Yuan H Y, Guo Er-Jia, Goennenwein Sebastian T B, Kläui Mathias

机构信息

School of Materials Science and Engineering, University of Science and Technology Beijing, 100083 Beijing, People's Republic of China. Graduate School of Excellence Materials Science in Mainz (MAINZ), 55128 Mainz, Germany. Institute of Physics, Johannes Gutenberg-Universität Mainz, 55099 Mainz, Germany.

出版信息

J Phys Condens Matter. 2018 Jan 24;30(3):035802. doi: 10.1088/1361-648X/aa9e26.

Abstract

We investigate the spin Hall magnetoresistance (SMR) in a gadolinium iron garnet (GdIG)/platinum (Pt) heterostructure by angular dependent magnetoresistance measurements. The magnetic structure of the ferromagnetic insulator GdIG is non-collinear near the compensation temperature, while it is collinear far from the compensation temperature. In the collinear regime, the SMR signal in GdIG is consistent with the usual [Formula: see text] relation well established in the collinear magnet yttrium iron garnet, with [Formula: see text] the angle between magnetization and spin Hall spin polarization direction. In the non-collinear regime, both an SMR signal with inverted sign and a more complex angular dependence with four maxima are observed within one sweep cycle. The number of maxima as well as the relative strength of different maxima depend strongly on temperature and field strength. Our results evidence a complex SMR behavior in the non-collinear magnetic regime that goes beyond the conventional formalism developed for collinear magnetic structures.

摘要

我们通过角依赖磁电阻测量研究了钆铁石榴石(GdIG)/铂(Pt)异质结构中的自旋霍尔磁电阻(SMR)。铁磁绝缘体GdIG的磁结构在补偿温度附近是非共线的,而在远离补偿温度时是共线的。在共线状态下,GdIG中的SMR信号与共线磁体钇铁石榴石中已确立的通常的[公式:见正文]关系一致,其中[公式:见正文]是磁化强度与自旋霍尔自旋极化方向之间的夹角。在非共线状态下,在一个扫描周期内观察到一个符号反转的SMR信号以及一种具有四个最大值的更复杂的角依赖性。最大值的数量以及不同最大值的相对强度强烈依赖于温度和场强。我们的结果证明了在非共线磁状态下存在一种复杂的SMR行为,这种行为超出了为共线磁结构发展的传统形式理论。

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