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Reduce the magnetic damping of Pt/ferromagnet heterostructures by inserting a Hf spacer layer

机译:通过插入 Hf 间隔层来降低 Pt/铁磁体异质结构的磁阻尼

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摘要

We investigated the effect of the Hf spacer layer on the magnetic damping of Pt/ferromagnet (FM) heterostructures by using broadband ferromagnetic resonance. The magnetic damping of Pt/Co is reduced greatly and then enhanced slightly as the thickness of the Hf spacer layer increases, which is ascribed to the competition of the magnetic proximity effect, the anti-damping behavior, and the spin-pumping effect occurring at the interface. The 3-nm-thick Hf spacer layer results in a maximum reduction rate as high as 48.8 for the magnetic damping of the Pt/Co samples. The reduction of magnetic damping by the Hf spacer layer was additionally demonstrated in the heterostructures of Pt/NiFe and Pt/CoFeB, which suggests the universal tuning effect of the Hf spacer layer on the magnetic damping of Pt/FM systems.
机译:利用宽带铁磁共振研究了Hf间隔层对Pt/铁磁体(FM)异质结磁阻尼的影响.随着Hf间隔层厚度的增加,Pt/Co的磁阻尼大大降低,然后略有增强,这归因于界面处磁邻近效应、抗阻尼行为和自旋泵效应的竞争。3 nm厚的Hf间隔层使Pt/Co样品的磁阻尼最大还原率高达48.8%。在Pt/NiFe和Pt/CoFeB的异质结构中,Hf间隔层对磁阻尼的降低也得到了进一步证明,这表明Hf间隔层对Pt/FM系统的磁阻尼具有普遍的调谐作用。

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