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Two-dimensional topological crystalline quantum spin Hall effect in transition metal intercalated compounds

机译:过渡金属插层化合物中的二维拓扑晶体量子自旋霍尔效应

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While most of the two-dimensional (2D) topological crystalline insulators (TCIs) belong to group IV-VI narrow-band-gap semiconductors in a square lattice, in the present work we predict a TCI family based on transition metal intercalated compounds in a hexagonal lattice. First-principles calculations combined with a substrate-fixed globally optimal structural search technique show that a layer of Os prefers a uniform distribution between two graphene sheets. Band dispersion calculations reveal a Dirac point and a Dirac nodal ring near the Fermi level. The Dirac point is ascribed to the hybridization of e_2 and e~*_2 orbitals, and the Dirac ring is formed due to dispersion of s and e~*_1 orbitals. Upon inclusion of spin-orbit coupling, these Dirac states open topologically nontrivial local band gaps, which are characterized by nonzero mirror Chern numbers. The quantum spin Hall effect is also observed by integrating the spin Berry curvature in the Brillouin zone. In contrast to the 2D group IV-VI TCIs whose band inversions at X and Y points are "locked" by C_4 rotation symmetry, here the relative energy of two local band gaps can be manipulated by in-plane biaxial strains. Some other similar intercalation compounds are also shown to be topologically nontrivial. Our work extends the 2D TCI family into a hexagonal lattice composed of transition metals.
机译:虽然大多数二维(2D)拓扑晶体绝缘体(TCI)都属于正方形晶格中的IV-VI组窄带隙半导体,但在本工作中,我们基于过渡金属插层化合物中的TCI族预测了TCI族。六角格。第一性原理计算与固定在基材上的全局最佳结构搜索技术相结合显示,Os层更喜欢两个石墨烯片之间的均匀分布。频带色散计算揭示了费米能级附近的狄拉克点和狄拉克节点环。 Dirac点归因于e_2和e〜* _2轨道的杂化,并且Dirac环是由于s和e〜* _1轨道的分散而形成的。在包含自旋轨道耦合时,这些狄拉克状态会打开拓扑上不平凡的局部带隙,其特征是非零镜像Chern数。通过积分布里渊区的自旋贝里曲率,还可以观察到量子自旋霍尔效应。与2D组IV-VI TCI的X和Y点的带反转通过C_4旋转对称性“锁定”相比,这里两个局部带隙的相对能量可以通过平面内双轴应变来控制。还显示了一些其他类似的插层化合物在拓扑上很重要。我们的工作将2D TCI系列扩展为由过渡金属组成的六边形晶格。

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  • 来源
    《Physical review. B, Condensed Matter And Materals Physics》 |2017年第8期|081102.1-081102.5|共5页
  • 作者

    Jian Zhou; Puru Jena;

  • 作者单位

    Physics Department, Virginia Commonwealth University, Richmond, Virginia 23284, USA;

    Physics Department, Virginia Commonwealth University, Richmond, Virginia 23284, USA;

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  • 正文语种 eng
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