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Magnon contribution to unidirectional spin Hall magnetoresistance in ferromagnetic-insulator/heavy-metal bilayers

机译:MAGNON对单向旋转霍尔的贡献在铁磁绝缘体/重金属双层的磁阻

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摘要

We develop a model for the magnonic contribution to the unidirectional spin Hall magnetoresistance (USMR) of heavy metal/ferromagnetic insulator bilayer films. We show that diffusive transport of Holstein-Primakoff magnons leads to an accumulation of spin near the bilayer interface, giving rise to a magnoresistance which is not invariant under inversion of the current direction. Unlike the electronic contribution described by Zhang and Vignale [Phys. Rev. B 94, 140411 (2016)], which requires an electrically conductive ferromagnet, the magnonic contribution can occur in ferromagnetic insulators such as yttrium iron garnet. We show that the magnonic USMR is, to leading order, cubic in the spin Hall angle of the heavy metal, as opposed to the linear relation found for the electronic contribution. We estimate that the maximal magnonic USMR in Pt vertical bar YIG bilayers is on the order of 10(-8) but may reach values of up to 10(-5) if the magnon gap is suppressed and can thus become comparable to the electronic contribution in, e.g., Pt vertical bar Co. We show that the magnonic USMR at a finite magnon gap may be enhanced by an order of magnitude if the magnon diffusion length is decreased to a specific optimal value that depends on various system parameters.
机译:我们开发了对重金属/铁磁绝缘体双层膜的单向旋转霍米膜磁阻(USMR)的延长贡献的模型。我们表明,Holstein-Primakoff Magnons的扩散运输导致双层界面附近旋转的积累,从而产生在当前方向的反转下不不变的磁阻。与Zhang和Vignale描述的电子贡献不同[PHY。 Rev.B 94,140411(2016)],其需要导电铁磁性,延长贡献可以在钇铁石榴石等铁磁绝缘体中发生。我们表明,磁性USMR在重金属的旋转霍尔角中的领先顺序,与电子贡献的线性关系相反。我们估计PT垂直条形帘布层的最大磁力化USMR约为10(-8),但如果贵金翁间隙被抑制并且可以与电子贡献相当,则可以达到高达10(-5)的值在例如Pt垂直条Co.中,我们表明,如果肿瘤扩散长度降低到取决于各种系统参数的特定最佳值,则可以通过幅度提高有限氧化氧化镁间隙处的agagonicumr。

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  • 来源
    《Physical review. B, Condensed Matter And Materals Physics》 |2019年第6期|064438.1-064438.8|共8页
  • 作者单位

    Univ Utrecht Inst Theoret Phys Princetonpl 5 NL-3584 CC Utrecht Netherlands;

    Univ Utrecht Inst Theoret Phys Princetonpl 5 NL-3584 CC Utrecht Netherlands;

    Univ Utrecht Inst Theoret Phys Princetonpl 5 NL-3584 CC Utrecht Netherlands|Eindhoven Univ Technol Dept Appl Phys POB 513 NL-5600 MB Eindhoven Netherlands;

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