论文标题
量子旋转大厅效果的加倍,高旋转chern数字为$α$ - 抗苯乙烯和$α$ -Bismuthene
Doubled Quantum Spin Hall Effect with High-Spin Chern Number in $α$-Antimonene and $α$-Bismuthene
论文作者
论文摘要
量子自旋大厅效应的发现激发了具有各种外来特性的拓扑物理领域。在这里,我们以二维为特征的$ {\ Mathcal c_s} = 2 $的高旋转Chern数和两对螺旋边缘状态的高旋转数量的二级量子旋转效果的出现。尽管在拓扑量子化学和对称指标理论中被忽略且不可见,但已经实验合成的$α$ - 抗苯乙烯和$α$ - 布曲烯被揭示为预测的拓扑状态的现实材料候选,带有带频段的频段逆转,而不是高度k $ - 点,而不是高于中的型号。值得注意的是,非平凡的能量差距可以以$α$ -BISMUTHENE的速度高达464 MEV,这表明对室温观察的很高可能性可以观察到加倍的量子旋转厅效应。此外,构建了一个四波段有效模型,以进一步证明获得这种非平凡拓扑的可行性。我们的结果不仅揭示了锑和鞭毛的新拓扑特征,而且还将促进先前被忽视的隐藏拓扑的实验表征。
The discovery of quantum spin Hall effect has ignited the field of topological physics with vast variety of exotic properties. Here, we present the emergence of doubled quantum spin Hall effect in two dimensions characterized with a high spin Chern number of ${\mathcal C_S}=2$ and two pairs of helical edge states. Although is overlooked and invisible in topological quantum chemistry and symmetry indicator theory, the already experimentally synthesized $α$-antimonene and $α$-bismuthene are revealed as realistic material candidates of predicted topological states with band inversions emerging at generic $k$-points, rather than the high-symmetry momenta. Remarkably, the nontrivial energy gap can be as large as 464 meV for $α$-bismuthene, indicating the high possibility of room-temperature observation of the doubled quantum spin Hall effect. Moreover, a four-band effective model is constructed to demonstrate further the feasibility of attaining this type of nontrivial topology. Our results not only uncover a novel topological character of antimony and bismuth, but will also facilitate the experimental characterization of the previously overlooked hidden topology.