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Gate-dependent spin Hall induced nonlocal resistance and the symmetry of spin-orbit scattering in Au-clustered graphene

机译:栅极依赖性旋转霍尔诱导非局部抗性和Au簇石墨烯中旋转轨道散射的对称性

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摘要

Engineering the electron dispersion of graphene to be spin-dependent is crucial for the realization of spin-based logic devices. Enhancing spin-orbit coupling in graphene can induce spin Hall effect, which can be adapted to generate or detect a spin current without a ferromagnet. Recently, both chemically and physically decorated graphenes have shown to exhibit large nonlocal resistance via the spin Hall and its inverse effects. However, these nonlocal transport results have raised critical debates due to the absence of field dependent Hanle curve in subsequent studies. Here, we introduce Au clusters on graphene to enhance spin-orbit coupling and employ a nonlocal geometry to study the spin Hall induced nonlocal resistance. Our results show that the nonlocal resistance highly depends on the applied gate voltage due to various current channels. However, the spin Hall induced nonlocal resistance becomes dominant at a particular carrier concentration, which is further confirmed through Hanle curves. The obtained spin Hall angle is as high as ∼0.09 at 2 K. Temperature dependence of spin relaxation time is governed by the symmetry of spin-orbit coupling, which also depends on the gate voltage: asymmetric near the charge neutral point and symmetric at high carrier concentration. These results inspire an effective method for generating spin currents in graphene and provide important insights for the spin Hall effect as well as the symmetry of spin scattering in physically decorated graphene.
机译:工程石墨烯的电子分散旋转依赖性对于实现自旋基逻辑器件来说至关重要。增强石墨烯中的旋转轨道耦合可以诱导旋转霍尔效应,其可以适于产生或检测没有铁甘薯的旋转电流。最近,化学和物理装饰的石墨烯均显示出通过旋转展厅及其倒置表现出大的非絮凝性。然而,由于在随后的研究中没有领域依赖的Hanle曲线,这些非局部运输结果提出了关键争论。在这里,我们在石墨烯上介绍了Au集群,以增强旋转轨道耦合,并采用非局部几何体来研究旋转霍尔诱导的非局部抗性。我们的结果表明,由于各种电流通道,非识别性电阻高度取决于所施加的栅极电压。然而,旋转霍尔诱导的非局部电阻在特定的载体浓度下变得优势,其通过Hanle曲线进一步证实。所获得的旋转霍尔角在2k时高达〜0.09。旋转轨道耦合的对称性旋转速度耦合的温度依赖性,这也取决于栅极电压:电荷中性点附近的不对称和高电平载体浓度。这些结果激发了一种有效的方法,用于在石墨烯中产生旋转电流,为旋转霍尔效应提供重要见解以及物理装饰石墨烯中的旋转散射对称性。

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  • 来源
    《Physical Review. B, Condensed Matter》 |2017年第24期|245414.1-245414.8|共8页
  • 作者单位

    School of Materials Science and Engineering-Low Dimensional Carbon Materials Center Ulsan National Institute of Science and Technology Ulsan 44919 Republic of Korea;

    School of Materials Science and Engineering-Low Dimensional Carbon Materials Center Ulsan National Institute of Science and Technology Ulsan 44919 Republic of Korea;

    School of Materials Science and Engineering-Low Dimensional Carbon Materials Center Ulsan National Institute of Science and Technology Ulsan 44919 Republic of Korea;

    School of Materials Science and Engineering-Low Dimensional Carbon Materials Center Ulsan National Institute of Science and Technology Ulsan 44919 Republic of Korea;

    School of Materials Science and Engineering-Low Dimensional Carbon Materials Center Ulsan National Institute of Science and Technology Ulsan 44919 Republic of Korea;

    School of Materials Science and Engineering-Low Dimensional Carbon Materials Center Ulsan National Institute of Science and Technology Ulsan 44919 Republic of Korea;

    School of Materials Science and Engineering-Low Dimensional Carbon Materials Center Ulsan National Institute of Science and Technology Ulsan 44919 Republic of Korea;

    School of Materials Science and Engineering-Low Dimensional Carbon Materials Center Ulsan National Institute of Science and Technology Ulsan 44919 Republic of Korea;

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