Prediction of Quantum Anomalous Hall Effect in MBi and MSb (M:Ti, Zr, and Hf) Honeycombs

被引:12
作者
Huang, Zhi-Quan [1 ]
Chen, Wei-Chih [1 ]
Macam, Gennevieve M. [1 ]
Crisostomo, Christian P. [1 ]
Huang, Shin-Ming [1 ]
Chen, Rong-Bin [3 ]
Albao, Marvin A. [4 ]
Jang, Der-Jun [1 ,2 ]
Lin, Hsin [5 ,6 ,7 ]
Chuang, Feng-Chuan [1 ,2 ,8 ]
机构
[1] Natl Sun Yat Sen Univ, Dept Phys, Kaohsiung 804, Taiwan
[2] Natl Sun Yat Sen Univ, Multidisciplinary & Data Sci Res Ctr, Kaohsiung 804, Taiwan
[3] Natl Kaohsiung Marine Univ, Ctr Gen Studies, Kaohsiung 811, Taiwan
[4] Univ Philippines, Los Banos Coll, Inst Math Sci & Phys, Laguna 811, Philippines
[5] Acad Sinica, Inst Phys, Taipei 11529, Taiwan
[6] Natl Univ Singapore, Ctr Adv Mat 2D, 6 Sci Dr 2, Singapore 117546, Singapore
[7] Natl Univ Singapore, Graphene Res Ctr, 6 Sci Dr 2, Singapore 117546, Singapore
[8] Natl Univ Singapore, Dept Phys, 2 Sci Dr 3, Singapore 117542, Singapore
来源
NANOSCALE RESEARCH LETTERS | 2018年 / 13卷
基金
新加坡国家研究基金会;
关键词
Quantum anomalous Hall effect; Topological phase transition; TM-Bi honeycomb; Electronic structures; First-principles calculations; INSULATORS; STATES;
D O I
10.1186/s11671-017-2424-y
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The abounding possibilities of discovering novel materials has driven enhanced research effort in the field of materials physics. Only recently, the quantum anomalous hall effect (QAHE) was realized in magnetic topological insulators (TIs) albeit existing at extremely low temperatures. Here, we predict that MPn (M=Ti, Zr, and Hf; Pn=Sb and Bi) honeycombs are capable of possessing QAH insulating phases based on first-principles electronic structure calculations. We found that HfBi, HfSb, TiBi, and TiSb honeycomb systems possess QAHE with the largest band gap of 15 meV under the effect of tensile strain. In low-buckled HfBi honeycomb, we demonstrated the change of Chern number with increasing lattice constant. The band crossings occurred at low symmetry points. We also found that by varying the buckling distance we can induce a phase transition such that the band crossing between two Hf d-orbitals occurs along high-symmetry point K2. Moreover, edge states are demonstrated in buckled HfBi zigzag nanoribbons. This study contributes additional novel materials to the current pool of predicted QAH insulators which have promising applications in spintronics.
引用
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页数:8
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