Stable two-dimensional dumbbell stanene: A quantum spin Hall insulator
Stable two-dimensional dumbbell stanene: A quantum spin Hall insulator
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DOI:
10.1103/physrevb.90.121408
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发表时间:
2014-07
影响因子:
3.7
通讯作者:
Peizhe Tang;Pengcheng Chen;Wendong Cao;Huaqing Huang;S. Cahangirov;L. Xian;Yong Xu;Shoucheng Zhang-Shoucheng-Zha
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文献类型:
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作者:
Peizhe Tang;Pengcheng Chen;Wendong Cao;Huaqing Huang;S. Cahangirov;L. Xian;Yong Xu;Shoucheng Zhang-Shoucheng-Zha
From density functional theory within the generalized gradient approximation we predict a structure of stanene with dumbbell units (DBs), and show that it is a two-dimensional topological insulator with an inverted band gap which can be tuned by compressive strain. Furthermore, we propose that the boron nitride sheet and reconstructed $(2\ifmmode\times\else\texttimes\fi{}2)$ InSb(111) surfaces are ideal substrates for the experimental realization of DB stanene, maintaining its nontrivial topology. Combined with standard semiconductor technologies, such as magnetic doping and electrical gating, the quantum anomalous Hall effect, Chern half metallicity, and topological superconductivity can be realized in DB stanene on those substrates. These properties make the two-dimensional supported stanene a good platform for the study of quantum spin Hall insulators as well as other exotic quantum states of matter.