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First-principles study of magnetization relaxation enhancement and spin transfer in thin magnetic films

机译:磁性薄膜中磁化弛豫增强和自旋转移的第一性原理研究

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摘要

The interface-induced magnetization damping of thin ferromagnetic films in contact with normal-metal layers is calculated from first principles for clean and disordered Fe/Au and Co/Cu interfaces. Interference effects arising from coherent scattering turn out to be very small, consistent with a very small magnetic coherence length. Because the mixing conductances which govern the spin transfer are to a good approximation real-valued, the spin pumping can be described by an increased Gilbert damping factor but an unmodified gyromagnetic ratio. The results also confirm that the spin-current-induced magnetization torque is an interface effect.
机译:根据与干净无序的Fe / Au和Co / Cu界面的第一原理计算出与普通金属层接触的铁磁薄膜的界面感应磁化阻尼。相干散射引起的干扰效应非常小,与非常小的磁相干长度相符。因为控制自旋传递的混合电导接近于真实值,所以自旋泵浦可以用吉尔伯特阻尼系数增加而回旋磁比未改变来描述。该结果还证实自旋电流感应的磁化转矩是界面效应。

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