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首页> 外文期刊>Scientific reports. >Large spin Hall magnetoresistance and its correlation to the spin-orbit torque in W/CoFeB/MgO structures
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Large spin Hall magnetoresistance and its correlation to the spin-orbit torque in W/CoFeB/MgO structures

机译:W / CoFeB / MgO结构中的大自旋霍尔磁阻及其与自旋轨道转矩的关系

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The phenomena based on spin-orbit interaction in heavy metal/ferromagnet/oxide structures have been investigated extensively due to their applicability to the manipulation of the magnetization direction via the in-plane current. This implies the existence of an inverse effect, in which the conductivity in such structures should depend on the magnetization orientation. In this work, we report a systematic study of the magnetoresistance (MR) of W/CoFeB/MgO structures and its correlation with the current-induced torque to the magnetization. We observe that the MR is independent of the angle between the magnetization and current direction but is determined by the relative magnetization orientation with respect to the spin direction accumulated by the spin Hall effect, for which the symmetry is identical to that of so-called the spin Hall magnetoresistance. The MR of ~1% in W/CoFeB/MgO samples is considerably larger than those in other structures of Ta/CoFeB/MgO or Pt/Co/AlOx, which indicates a larger spin Hall angle of W. Moreover, the similar W thickness dependence of the MR and the current-induced magnetization switching efficiency demonstrates that MR in a non-magnet/ferromagnet structure can be utilized to understand other closely correlated spin-orbit coupling effects such as the inverse spin Hall effect or the spin-orbit spin transfer torques.
机译:由于重金属/铁磁体/氧化物结构中基于自旋轨道相互作用的现象适用于通过面内电流操纵磁化方向的现象,因此已被广泛研究。这意味着存在反作用,其中这种结构中的电导率应取决于磁化方向。在这项工作中,我们报告了W / CoFeB / MgO结构的磁阻(MR)及其与电流感应转矩对磁化强度的相关性的系统研究。我们观察到,MR与磁化强度和电流方向之间的角度无关,而是由相对于由自旋霍尔效应所累积的自旋方向的相对磁化方向确定的,其对称性与所谓的磁对称性相同。自旋霍尔磁阻。 W / CoFeB / MgO样品中的MR约为1%,比Ta / CoFeB / MgO或Pt / Co / AlOx的其他结构中的MR大得多,这表明W的自旋霍尔角更大。此外,相似的W厚度MR与电流感应磁化转换效率的依赖关系表明,非磁体/铁磁体结构中的MR可用于理解其他紧密相关的自旋轨道耦合效应,例如逆自旋霍尔效应或自旋轨道自旋转移扭矩。

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