论文标题

w/cofeb薄膜异质结构中的结构相依赖性巨型界面旋转透明度

Structural Phase Dependent Giant Interfacial Spin Transparency in W/CoFeB Thin Film Heterostructure

论文作者

Panda, Surya Narayan, Majumder, Sudip, Bhattacharyya, Arpan, Dutta, Soma, Choudhury, Samiran, Barman, Anjan

论文摘要

纯自旋电流已转化能节能的自旋装置,并且具有旋转角动量传输的显着特征。自旋泵化是一种产生纯自旋电流的有效方法,其提高效率高效旋转电导(GEFF)和界面自旋透明度(T)是必不可少的。在这里,通过采用全光分辨的磁光 - 光谱kerr效应技术,在sub/w(t)/w(t)/w(t)/w(t)/co20fe60b20(d)/siO2(2 nm)异质结构中进行了巨型T。从W和COFEB厚度的Gilbert阻尼的变化中,提取了W和自旋混合电导的自旋扩散长度。随后,对于β-W/COFEB界面而言,T为0.81 \ pm 0.03。 A sharp variation of Geff and T with W thickness is observed in consonance with the thickness-dependent structural phase transition and resistivity of W. The spin memory loss and two-magnon scattering effects are found to have negligible contributions to damping modulation as opposed to spin pumping effect which is reconfirmed from the invariance of damping with Cu spacer layer thickness inserted between W and CoFeB.巨型界面自旋透明度的观察及其对W的晶体结构的强烈依赖对于纯自旋电流基于自旋的旋转轨道设备很重要。

Pure spin current has transfigured the energy-efficient spintronic devices and it has the salient characteristic of transport of the spin angular momentum. Spin pumping is a potent method to generate pure spin current and for its increased efficiency high effective spin-mixing conductance (Geff) and interfacial spin transparency (T) are essential. Here, a giant T is reported in Sub/W(t)/Co20Fe60B20(d)/SiO2(2 nm) heterostructures in β-tungsten (β-W) phase by employing all-optical time-resolved magneto-optical Kerr effect technique. From the variation of Gilbert damping with W and CoFeB thicknesses, the spin diffusion length of W and spin-mixing conductances are extracted. Subsequently, T is derived as 0.81 \pm 0.03 for the β-W/CoFeB interface. A sharp variation of Geff and T with W thickness is observed in consonance with the thickness-dependent structural phase transition and resistivity of W. The spin memory loss and two-magnon scattering effects are found to have negligible contributions to damping modulation as opposed to spin pumping effect which is reconfirmed from the invariance of damping with Cu spacer layer thickness inserted between W and CoFeB. The observation of giant interfacial spin transparency and its strong dependence on crystal structures of W will be important for pure spin current based spin-orbitronic devices.

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