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Unusual anomalous Hall effect in perpendicularly magnetized YIG films with a small Gilbert damping constant

机译:不寻常的异常霍尔在垂直的磁化的薄膜中效果,具有小的吉尔伯特阻尼常数

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摘要

The Y_3Fe_5O_(12) (YIG) films with perpendicular magnetic anisotropy (PMA) have recently attracted a great deal of attention for spintronics applications. Here, we report the induced PMA in the YIG films grown on (Gd_(2.6)Ca_(0.4))(Ga_(4.1)Mg_(0.25)Zr_(0.65))O_(12) (SGGG) substrates by epitaxial strain without preprocessing. Reciprocal space mapping shows that the films are lattice matched to the substrates without strain relaxation. Through ferromagnetic resonance and polarized neutron reflectometry measurements, we find that these YIG films have an ultralow Gilbert damping constant (α < 1 ×10~(-5)) and a magnetic dead layer, which is negligible at the YIG/SGGG interfaces. Moreover, the transport behavior of Pt/YIG/SGGG films reveals an enhancement of spin mixing conductance and a large unusual anomalous Hall effect (UAHE) as compared with Pt/YIG/Gd_3Ga_5O_(12) (GGG) films. Although the UAHE in Pt/YIG/SGGG films show different characteristics with varying YIG thickness, they are all ascribed to the possible noncollinear magnetic order at the Pt/YIG interfaces induced by epitaxial strain.
机译:具有垂直磁各向异性(PMA)的Y_3FE_5O_(12)(YIG)薄膜最近吸引了对闪光灯应用的大量关注。在这里,我们在长期生长的YIG膜中报告诱导的PMA(GD_(2.6)CA_(0.2))(GA_(4.1)MG_(0.25)ZR_(0.65))O_(12)(SCOGG)底板通过外延应变而无需预处理。倒数空间映射表明,薄膜是与基板匹配的晶格,没有应变松弛。通过铁磁共振和偏振中子反射测量测量,我们发现这些YIG薄膜具有UltlowWiLbert阻尼恒定(α1×10〜(-5))和磁性死层,在YIG / SGGG界面处可忽略不计。此外,与Pt / YIG / GD_3GA_5O_(GGG)膜相比,PT / YIG / SGGG膜的传输行为揭示了旋转混合电导和大型异常异常霍普效应(UAHE)。虽然Pt / YIG / SGGG薄膜中的uAhe显示出不同的厚度不同的特性,但它们均以外延菌株引起的Pt / Yig界面处的可能的非可折叠磁序。

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  • 来源
    《Physical review》 |2020年第17期|174431.1-174431.9|共9页
  • 作者单位

    Beijing Advanced Innovation Center for Materials Genome Engineering University of Science and Technology Beijing Beijing 100083 China School of Applied and Engineering Physics Cornell University Ithaca New York 14853 USA;

    Beijing Advanced Innovation Center for Materials Genome Engineering University of Science and Technology Beijing Beijing 100083 China;

    Department of Physics South University of Science and Technology of China Shenzhen 518055 China;

    Institute of Physics Chinese Academy of Sciences Beijing 100190 China;

    Beijing Advanced Innovation Center for Materials Genome Engineering University of Science and Technology Beijing Beijing 100083 China;

    Beijing Advanced Innovation Center for Materials Genome Engineering University of Science and Technology Beijing Beijing 100083 China;

    Beijing Advanced Innovation Center for Materials Genome Engineering University of Science and Technology Beijing Beijing 100083 China;

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