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Interface-induced spin Hall magnetoresistance enhancement in Pt-based tri-layer structure

机译:基于Pt的三层结构中界面诱导的自旋霍尔磁阻增强

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摘要

In this study, we integrated bilayer structure of covered Pt on nickel zinc ferrite (NZFO) and CoFe/Pt/NZFO tri-layer structure by pulsed laser deposition system for a spin Hall magnetoresistance (SMR) study. In the bilayer structure, the angular-dependent magnetoresistance (MR) results indicate that Pt/NZFO has a well-defined SMR behavior. Moreover, the spin Hall angle and the spin diffusion length, which were 0.0648 and 1.31 nm, respectively, can be fitted by changing the Pt thickness in the longitudinal SMR function. Particularly, the MR ratio of the bilayer structure (Pt/NZFO) has the highest changing ratio (about 0.135%), compared to the prototype structure Pt/Y3Fe5O12 (YIG) because the NZFO has higher magnetization. Meanwhile, the tri-layer samples (CoFe/Pt/NZFO) indicate that the MR behavior is related with CoFe thickness as revealed in angular-dependent MR measurement. Additionally, comparison between the tri-layer structure with Pt/NZFO and CoFe/Pt bilayer systems suggests that the SMR ratio can be enhanced by more than 70%, indicating that additional spin current should be injected into Pt layer.
机译:在这项研究中,我们通过脉冲激光沉积系统对镍锌铁氧体(NZFO)上的包覆Pt双层结构和CoFe / Pt / NZFO三层结构进行了集成,用于自旋霍尔磁阻(SMR)研究。在双层结构中,角度相关的磁阻(MR)结果表明Pt / NZFO具有良好定义的SMR行为。此外,通过改变纵向SMR功能中的Pt厚度,可以拟合出自旋霍尔角和自旋扩散长度,分别为0.0648和1.31 diffusionnm。特别地,与原型结构Pt / Y3Fe5O12(YIG)相比,双层结构的MR比(Pt / NZFO)具有最高的变化率(约0.135%),因为NZFO具有更高的磁化强度。同时,三层样品(CoFe / Pt / NZFO)表明,MR行为与CoFe厚度有关,如角度依赖性MR测量所揭示。另外,在具有Pt / NZFO的三层结构与CoFe / Pt双层系统之间的比较表明,SMR比率可以提高70%以上,这表明应该向Pt层注入额外的自旋电流。

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