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Study of spin mixing conductance of single oriented Pt in Pt/Ni81Fe19 heterostructure by spin pumping

机译:旋转泵送Pt / Ni81Fe19异质结构旋转混合电导的研究

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The spin mixing conductance g ↑↓ of a ferromagnetic and a nonmagnetic (NM) layer characterizes the transport efficiency of spin current through the interface. Exploration of the relationship between g ↑↓ and structural parameters such as the lattice orientation of the NM layer is critical to design effective spintronics devices. Here, the spin mixing conductance of two types of single oriented Pt and Ni 81 Fe 19 (Py) was studied experimentally, with the method of spin pumping. The obtained g ↑↓ for Pt (100)/Py and Pt (111)/Py bilayers is 8.6 ± 0.9?nm ?2 and 10.8 ± 1.6?nm ?2 , respectively, revealing the fact that the crystalline orientation of the metallic NM layer has no prominent impact on g ↑↓ , which is consistent with the theoretical prediction.
机译:铁磁性和非磁性(NM)层的旋转混合电导G↑↑具有通过界面的旋转电流的运输效率。 G△↓和结构参数之间的关系探索,例如NM层的晶格取向的关系对于设计有效的熔点装置至关重要。 这里,通过旋转泵送方法,通过实验研究两种类型的单面Pt和Ni 81 Fe 19(Py)的旋转混合电导。 Pt(100)/ py和Pt(111)/ py双层的所得g =α分别为8.6±0.9≤nm≤2和10.8±1.6?nm?2,揭示了金属nm的晶体取向的事实 图层对G↑↓没有突出的影响,这与理论预测一致。

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