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具有可调狄拉克能隙的锑/铋平面蜂窝状二维拓扑晶体绝缘体相

Two-dimensional Topological Crystalline Insulator Phase in Sb/Bi Planar Honeycomb with Tunable Dirac Gap.

作者信息

Hsu Chia-Hsiu, Huang Zhi-Quan, Crisostomo Christian P, Yao Liang-Zi, Chuang Feng-Chuan, Liu Yu-Tzu, Wang Baokai, Hsu Chuang-Han, Lee Chi-Cheng, Lin Hsin, Bansil Arun

机构信息

Department of Physics, National Sun Yat-Sen University, Kaohsiung 804, Taiwan.

Centre for Advanced 2D Materials and Graphene Research Centre, National University of Singapore, Singapore 117546.

出版信息

Sci Rep. 2016 Jan 14;6:18993. doi: 10.1038/srep18993.

Abstract

We predict planar Sb/Bi honeycomb to harbor a two-dimensional (2D) topological crystalline insulator (TCI) phase based on first-principles computations. Although buckled Sb and Bi honeycombs support 2D topological insulator (TI) phases, their structure becomes planar under tensile strain. The planar Sb/Bi honeycomb structure restores the mirror symmetry, and is shown to exhibit non-zero mirror Chern numbers, indicating that the system can host topologically protected edge states. Our computations show that the electronic spectrum of a planar Sb/Bi nanoribbon with armchair or zigzag edges contains two Dirac cones within the band gap and an even number of edge bands crossing the Fermi level. Lattice constant of the planar Sb honeycomb is found to nearly match that of hexagonal-BN. The Sb nanoribbon on hexagonal-BN exhibits gapped edge states, which we show to be tunable by an out-of-the-plane electric field, providing controllable gating of edge state important for device applications.

摘要

基于第一性原理计算,我们预测平面结构的锑/铋蜂窝晶格中存在二维拓扑晶体绝缘体(TCI)相。尽管翘曲的锑和铋蜂窝晶格支持二维拓扑绝缘体(TI)相,但在拉伸应变下它们的结构会变为平面结构。平面结构的锑/铋蜂窝晶格恢复了镜面对称性,并显示出具有非零的镜面陈数,这表明该系统可以拥有拓扑保护的边缘态。我们的计算表明,具有扶手椅形或锯齿形边缘的平面锑/铋纳米带的电子能谱在带隙内包含两个狄拉克锥,并且有偶数个边缘能带穿过费米能级。发现平面锑蜂窝晶格的晶格常数与六方氮化硼的晶格常数几乎匹配。在六方氮化硼上的锑纳米带表现出带隙边缘态,我们证明其可通过面外电场进行调控,这为器件应用中边缘态的可控门控提供了重要条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6fbe/4725924/dc15dcc55eff/srep18993-f1.jpg

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