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Quantum diagrammatic theory of the extrinsic spin Hall effect in graphene

机译:石墨烯本征自旋霍尔效应的量子图解理论

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摘要

We present a rigorous microscopic theory of the extrinsic spin Hall effect in disordered graphene based on a nonperturbative quantum diagrammatic treatment incorporating skew scattering and anomalous (impurity-concentration-independent) quantum corrections on equal footing. The leading skew-scattering contribution to the spin Hall conductivity is shown to quantitatively agree with Boltzmann transport theory over a wide range of parameters. Our self-consistent approach, where all topologically equivalent noncrossing diagrams are resummed, unveils that the skewness generated by spin-orbit-active impurities deeply influences the anomalous component of the spin Hall conductivity, even in the weak-scattering regime. This seemingly counterintuitive result is explained by the rich sublattice structure of scattering potentials in graphene, for which traditional Gaussian disorder approximations fail to capture the intricate correlations between skew scattering and side jumps generated through diffusion. Finally, we assess the role of quantum interference corrections by evaluating an important subclass of crossing diagrams recently considered in the context of the anomalous Hall effect, the X and ψ diagrams [A. Ado et al., Europhys. Lett. 111, 37004 (2015)]. We show that ψ diagrams, encoding quantum coherent skew scattering, display a strong Fermi energy dependence, dominating the anomalous spin Hall component away from the Dirac point. Our findings have direct implications for nonlocal transport experiments in spin-orbit-coupled graphene systems.
机译:我们基于无扰动量子图解处理提出了严格的微观理论,即无序石墨烯中的外在自旋霍耳效应,该处理结合了偏角散射和在相等基础上的异常(与杂质浓度无关)的量子校正。研究表明,自旋霍尔电导率的主要斜向散射贡献在很大范围的参数上与玻耳兹曼输运理论定量吻合。我们的自洽方法重新计算了所有拓扑等效的非交叉图,该方法揭示了自旋轨道活性杂质产生的偏斜会严重影响自旋霍尔电导率的反常分量,即使在弱散射状态下也是如此。石墨烯中散射势的丰富亚晶格结构解释了这一看似反直觉的结果,传统的高斯无序近似无法捕获偏斜散射与通过扩散产生的旁跳之间的复杂关系。最后,我们通过评估最近在异常霍尔效应的背景下考虑的交叉图的重要子类X和ψ图来评估量子干扰校正的作用。 Ado等人,Europhys。来吧111,37004(2015)]。我们表明,编码量子相干偏斜散射的ψ图显示出很强的费米能量依赖性,主导了远离狄拉克点的异常自旋霍尔分量。我们的发现对自旋轨道耦合石墨烯系统中的非局部传输实验具有直接的意义。

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  • 来源
    《Physical review》 |2016年第13期|134202.1-134202.16|共16页
  • 作者单位

    Centre for Advanced 2D Materials and Department of Physics, National University of Singapore, Singapore, 117551;

    Department of Physics, University of York, York YO10 5DD, United Kingdom;

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