Edge conduction in monolayer WTe2

被引:0
|
作者
Fei, Zaiyao [1 ]
Palomaki, Tauno [1 ]
Wu, Sanfeng [1 ]
Zhao, Wenjin [1 ]
Cai, Xinghan [1 ]
Sun, Bosong [1 ]
Nguyen, Paul [1 ]
Finney, Joseph [1 ]
Xu, Xiaodong [1 ,2 ]
Cobden, David H. [1 ]
机构
[1] Univ Washington, Dept Phys, Seattle, WA 98195 USA
[2] Univ Washington, Dept Mat Sci & Engn, Seattle, WA 98195 USA
基金
美国国家科学基金会;
关键词
SPIN; MAGNETORESISTANCE; TRANSITION; TRANSPORT;
D O I
10.1038/NPHYS4091
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
A two-dimensional topological insulator (2DTI) is guaranteed to have a helical one-dimensional edge mode(1-11) in which spin is locked to momentum, producing the quantum spin Hall effect and prohibiting elastic backscattering at zero magnetic field. No monolayer material has yet been shown to be a 2DTI, but recently theWeyl semimetal WTe2 was predicted(12) to become a 2DTI in monolayer form if a bulk gap opens. Here, we report that, at temperatures below about 100 K, monolayer WTe2 does become insulating in its interior, while the edges still conduct. The edge conduction is strongly suppressed by an in-plane magnetic field and is independent of gate voltage, save for mesoscopic fluctuations that grow on cooling due to a zero-bias anomaly, which reduces the linear-response conductance. Bilayer WTe2 also becomes insulating at low temperatures but does not show edge conduction. Many of these observations are consistent with monolayer WTe2 being a 2DTI. However, the low-temperature edge conductance, for contacts spacings down to 150 nm, never reaches values higher than similar to 20 mu S, about half the predicted value of e(2)/h, suggesting significant elastic scattering in the edge.
引用
收藏
页码:677 / +
页数:7
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