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Spin Nernst and anomalous Nernst effects and their signature outputs in ferromagnet/nonmagnet heterostructures

机译:旋转内核和异常的内部效果及其签名输出在铁圆环/非磁性异质结构中

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摘要

The spin Nernst effect (SNE) and anomalous Nernst effect (ANE) convert a heat current generated by a temperature gradient to a spin current in nonmagnetic metals and ferromagnets. respectively. We present a diffusive spin transport theory of the combination of these thermoelectric effects in ferromagnet (F)/nonmagnet (N) heterostructures and their respective output signals. In a F/N bilayer. in the presence of an in-plane temperature gradient, electrical voltages are induced by the SNE in N and the ANE in the F layers, via the inverse spin Hall effect in the N. The analytical expression of the thermally driven spin Hall magnetoresistance (TSMR) output is derived, which captures both the local SNE contribution in the N and the nonlocal mixing contribution due to the ANE in the adjacent F. Interestingly, the SNE and ANE give additive contributions to the transverse TSMR voltages but subtract from each other for the longitudinal component. This anisotropic response suggests a possible means to extract the individual SNE and ANE contributions, as well as spin-dependent polarization parameters. In a F1/N/F2 trilayer, both SNE and ANE contribute to spin torques on the free F2 layer. We analyze the ferromagnetic resonance (FMR) of the free layer and show that both thermoelectric effects contribute additively to the FMR magnitude and linewidth for the considered magnetization configuration. Finally, we show that TSMR can provide a more sensitive experimental detection of SNE and ANE down to a threshold thermal gradient of the order of 10~(-6) K/nm.
机译:旋转内部效应(SNE)和异常的内部效应(ANE)将通过温度梯度产生的热电流转换为非磁性金属和铁磁体中的旋转电流。分别。我们介绍了铁磁性(F)/非马克网(N)异质结构及其各自输出信号中这些热电效应的组合的扩散旋转传输理论。在一个f / n双层。在面内温度梯度的情况下,通过N的逆转旋转霍尔效应通过N和F层中的鼻塞和肛门诱导电压。热驱动旋转霍尔磁阻的分析表达(TSMR )输出是推导的,其由于邻近F中的ANE而捕获了N和非局部混合贡献的局部SNE贡献。有趣的是,SNE和ANE为横向TSMR电压提供了添加的贡献,但彼此减去纵向成分。这种各向异性响应表明了提取单个SNE和ANE贡献的可能方法,以及旋转依赖性偏振参数。在F1 / N / F2三层器中,SNE和ANE都有助于在游离F2层上旋转扭矩。我们分析了自由层的铁磁共振(FMR),并表明两个热电效应均给所考虑的磁化配置的FMR幅度和线宽贡献。最后,我们表明TSMR可以提供更敏感的SNE和ANE的实验检测到10〜( - 6)k / nm的阈值热梯度。

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  • 来源
    《Physical review.B.Condensed matter and materials physics》 |2020年第21期|214419.1-214419.10|共10页
  • 作者单位

    Department of Electrical and Computer Engineering National University of Singapore 117576 Singapore;

    Department of Electrical and Computer Engineering National University of Singapore 117576 Singapore;

    Department of Electrical and Computer Engineering National University of Singapore 117576 Singapore;

    Department of Electrical and Computer Engineering National University of Singapore 117576 Singapore;

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