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Landau levels in spin-orbit coupling proximitized graphene: Bulk states

机译:旋转轨道耦合的Landau水平Proximitized Graphene:散装状态

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摘要

We study the magnetic-field dependence of Landau levels in graphene proximitized by large spin-orbit coupling materials, such as transition-metal dichalcogenides or topological insulators. In addition to the Rashba coupling, two types of intrinsic spin-orbit interactions, uniform (Kane-Mele type) and staggered (valley Zeeman type), are included to resolve their interplay with magnetic orbital effects. Employing a continuum model approach, we derive analytic expressions for low-energy Landau levels, which can be used to extract local orbital and spin-orbit coupling parameters from scanning probe spectroscopy experiments. We compare different parameter regimes to identify fingerprints of relative and absolute magnitudes of intrinsic spin-orbit coupling in the spectra. The inverted band structure of graphene proximitized by WSe_2 leads to an interesting crossing of Landau states across the bulk gap at a crossover field, providing insights into the size of Rashba spin-orbit coupling. Landau-level spectroscopy can help to resolve the type and signs of the intrinsic spin-orbit coupling by analyzing the symmetry in energy and number of crossings in the Landau fan chart. Finally, our results suggest that the strong response to the magnetic field of Dirac electrons in proximitized graphene can be associated with extremely large self-rotating magnetic moments.
机译:我们研究了大型旋转轨道偶联材料(如过渡金属二甲基化物或拓扑绝缘体)所介绍的石墨烯中Landau水平的磁场依赖性。除了Rashba偶联之外,还包括两种类型的内在旋转轨道相互作用,均匀(Kane-Mele型)和交错(谷Zeeman型)以解决它们与磁性轨道效应的相互作用。采用连续模型方法,我们推导出低能量Landau水平的分析表达,可用于从扫描探针光谱实验中提取局部轨道和旋转轨道耦合参数。比较不同的参数制度以识别光谱中的内在旋转轨道耦合的相对和绝对幅度的指纹。由WSE_2倾斜的石墨烯的倒带结构导致Landau状态在交叉场的散装间隙上的一个有趣的交叉,提供了对Rashba旋转轨道耦合的尺寸的洞察。 Landau-Level光谱可以通过分析Landau Fan图表中的能量和交叉数量的对称性来解决内在自旋轨道耦合的类型和迹象。最后,我们的结果表明,对近旋转石墨烯中的DIRAC电子的磁场的强响应可以与极大的自旋转磁矩相关联。

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  • 来源
    《Physical review》 |2020年第16期|165416.1-165416.8|共8页
  • 作者

    Tobias Frank; Jaroslav Fabian;

  • 作者单位

    Institute for Theoretical Physics University of Regensburg 93040 Regensburg Germany;

    Institute for Theoretical Physics University of Regensburg 93040 Regensburg Germany;

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  • 正文语种 eng
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