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Roles of bulk and surface magnetic anisotropy on the longitudinal spin Seebeck effect of Pt/YIG

机译:体积和表面磁各向异性对Pt / YIG纵向自旋塞贝克效应的作用

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摘要

A clear understanding of the temperature evolution of the longitudinal spin Seebeck effect (LSSE) in the classic Pt/yttrium iron garnet (YIG) system and its association with magnetic anisotropy is essential towards optimization of its spin-caloric functionality for spintronics applications. We report here for the first time the temperature dependences of LSSE voltage (V LSSE), magnetocrystalline anisotropy field (H K) and surface perpendicular magnetic anisotropy field (H KS) in the same Pt/YIG system. We show that on lowering temperature, the sharp drop in V LSSE and the sudden increases in H K and H KS at ~175 K are associated with the spin reorientation due to single ion anisotropy of Fe2+ ions. The V LSSE peak at ~75 K is attributed to the H KS and M S (saturation magnetization) whose peaks also occur at the same temperature. The effects of surface and bulk magnetic anisotropies are corroborated with those of thermally excited magnon number and magnon propagation length to satisfactorily explain the temperature dependence of LSSE in the Pt/YIG system. Our study also emphasizes the important roles of bulk and surface anisotropies in the LSSE in YIG and paves a new pathway for developing novel spin-caloric materials.
机译:清楚了解经典Pt /钇铁石榴石(YIG)系统中纵向自旋塞贝克效应(LSSE)的温度演变及其与磁各向异性的关系,对于优化自旋电子学应用的自旋热功能至关重要。我们首次在此报告同一Pt / YIG系统中LSSE电压(V LSSE),磁晶各向异性场(H K)和表面垂直磁各向异性场(H KS)的温度依赖性。我们发现,在较低的温度下,由于Fe 2 + 离子的单离子各向异性,V LSSE的急剧下降以及H K和H KS在〜175 K处的突然增加与自旋取向有关。 V LSSE峰值在〜75 K处归因于H KS和M S(饱和磁化强度),其峰值也出现在相同温度下。表面和体磁各向异性的影响与热激发磁振子数和磁振子传播长度的影响得到了证实,可以令人满意地解释LSSE在Pt / YIG系统中的温度依赖性。我们的研究还强调了YIG LSSE中体相和表面各向异性的重要作用,为开发新型自热材料提供了新途径。

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