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首页> 外文期刊>Physical review, B >Topologically trivial states induced by strong spin-orbit coupling and Chern insulators in doped X(C21N3H15) (X = Ta, Hf) metal-organic frameworks
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Topologically trivial states induced by strong spin-orbit coupling and Chern insulators in doped X(C21N3H15) (X = Ta, Hf) metal-organic frameworks

机译:由强旋转轨道耦合和掺杂X(C21N3H15)(C21N3H15)(X = TA,HF)金属 - 有机框架的拓扑型旋转轨道耦合和塞内绝缘体诱导

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摘要

We study topological properties of two-dimensional (2D) bi-triangular lattices with multiple p and d orbitals. Tight-binding (TB) model calculations show that the multiple p (p(x)/p(y)) and d (d(xy)/d(x2-y2) or d(xz)/d(yz)) bands in the 2D bi-triangular lattices, with C-3 symmetry, are all degenerate at the F point with quadratic non-Dirac band dispersions and gapped at the K/K' points. Spin-orbit coupling (SOC) is found not only resulting in the topologically nontrivial states, but also the topologically trivial states. In the 2D bi-triangular lattices, a topological phase transition from a topologically nontrivial state to a trivial state can be triggered by increasing the atomic SOC strength. Our first-principles calculations predict a large band-gap quantum anomalous Hall state (about 30 meV) and topological phase transitions in a 2D metal-organic frameworks X(C21N3H15) (X=Ta, Hf), rationalized well by the TB model built above. Our results are helpful to deeply understand the topological states and provide theoretical guidance for the search of 2D topological materials based on the multiple p and d orbitals.
机译:我们研究了多种P和D轨道的二维(2D)双三角格子的拓扑特性。紧密绑定(TB)模型计算表明,多P(P(x)/ p(y))和d(d(xy)/ d(x2-y2)或d(xz)/ d(yz))带在具有C-3对称的2D双三角形格子中,在F点处与二次非DIRAC带分散体进行堕落并以K / K点划点。旋转轨道耦合(SoC)不仅导致拓扑非学生状态,而且发现了拓扑琐碎的状态。在2D双三角格子中,可以通过增加原子SOC强度来触发从拓扑非学生状态到微态状态的拓扑相位转变。我们的第一原理计算预测,2D金属 - 有机框架X(C21N3H15)(X = TA,HF)中的大带间隙量子异常霍尔(约30mEV)和拓扑相转变,通过构建的TB模型合理化良好以上。我们的结果有助于深入了解拓扑状态,并根据多个P和D轨道来检索2D拓扑材料的理论指导。

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