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Disentangling magnon magnetoresistance from anisotropic and spin Hall magnetoresistance in NiFe/Pt bilayers

机译:在NiFe / Pt双层的各向异性和旋转霍尔磁阻中解开Magnon磁阻

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摘要

We conducted a systematic angular dependence study of nonlinear magnetoresistance in NiFe/Pt bilayers at variable temperatures and fields using the Wheatstone bridge method. We successfully disentangled magnon magnetoresistance from other types of magnetoresistances based on their different temperature and field dependences. Both the spin Hall / anisotropic and magnon magnetoresistances contain sin phi(m) and sin 3 phi(m) components, with phi(m) the angle between current and magnetization, but they exhibit different field and temperature dependence. The competition between different types of magnetoresistances leads to a sign reversal of the sin 3 phi(m) component at a specific magnetic field, which was not reported previously. The phenomenological model developed is able to account for the experimental results for both NiFe/Pt and NiFe/Ta samples with different layer thicknesses. Our results demonstrate the importance of disentangling different types of magnetoresistances when characterizing the charge-spin interconversion process in magnetic heterostructures.
机译:我们在使用惠斯通桥法的可变温度和场的NiFe / Pt双层在NiFe / Pt双层中的非线性磁阻进行了系统角度依赖性研究。我们基于其不同的温度和场依赖,我们成功地从其他类型的磁阻中解开了Magnon磁阻。旋转霍尔/各向异性和菱镁磁阻均含有SIN PHI(M)和SIN 3 PHI(M)组分,用PHI(m)在电流和磁化之间的角度,但它们表现出不同的场和温度依赖性。不同类型的磁阻之间的竞争导致在特定磁场处的SIN 3 PHI(M)组分的符号逆转,此前未报道。开发的现象学模型能够考虑NiFe / Pt和NiFe / Ta样品的实验结果,具有不同的层厚度。我们的结果表明,当在磁性异质结构中表征电荷 - 自旋相互转化过程时,消解不同类型的磁阻的重要性。

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  • 来源
    《Physical review》 |2019年第9期|094413.1-094413.9|共9页
  • 作者单位

    Natl Univ Singapore Dept Elect & Comp Engn 4 Engn Dr 3 Singapore 117583 Singapore;

    Natl Univ Singapore Dept Elect & Comp Engn 4 Engn Dr 3 Singapore 117583 Singapore;

    Natl Univ Singapore Dept Elect & Comp Engn 4 Engn Dr 3 Singapore 117583 Singapore;

    Natl Univ Singapore Dept Elect & Comp Engn 4 Engn Dr 3 Singapore 117583 Singapore;

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