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Spin-orbit torques associated with ferrimagnetic order in Pt/GdFeCo/MgO layers

机译:Pt / GdFeCo / MgO层中与亚铁磁有序相关的自旋轨道转矩

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摘要

We investigate spin orbit torque (SOT) efficiencies and magnetic properties of Pt/GdFeCo/MgO multilayers by varying the thicknesses of GdFeCo and MgO layers. Our studies indicate that the ferrimagnetism in the GdFeCo alloy is considerably influenced by both thicknesses due to the diffusion of Gd atoms toward the MgO layer. Comparing to conventional Pt/ferromagnet/MgO structures, the Pt/GdFeCo/MgO exhibits a lower efficiency of SOTs associated with ferrimagnetic order and a similar magnitude of magnetic damping. The previous models that have been developed for rigid ferromagnets are inappropriate to analyze our experimental data, leading to an unphysical consequence of spin transmission larger than unity. Our results imply that the heavy-metal/ferrimagnet system is quite different from heavy-metal/ferromagnet systems in terms of magnetic dynamical modes, spin angular momentum transfer, and relaxation processes.
机译:我们通过改变GdFeCo和MgO层的厚度来研究Pt / GdFeCo / MgO多层膜的自旋轨道转矩(SOT)效率和磁性能。我们的研究表明,由于Gd原子向MgO层的扩散,两种厚度对GdFeCo合金中的亚铁磁性都有很大影响。与传统的Pt /铁磁体/ MgO结构相比,Pt / GdFeCo / MgO表现出较低的与亚铁磁序相关的SOT效率以及类似的磁阻尼。以前为刚性铁磁体开发的模型不适用于分析我们的实验数据,从而导致自旋传输大于一的非物理结果。我们的结果表明,重金属/铁磁体系统与重金属/铁磁体系统在磁动力学模式,自旋角动量传递和弛豫过程方面有很大不同。

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