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Robust edge photocurrent response on layered type II Weyl semimetal WTe2

Authors :
Qinsheng Wang
Jian-Hao Chen
Kai Sun
Shuang Jia
Junxi Duan
Dayu Yan
Jingchuan Zheng
Maoyuan Wang
Jiawei Lai
Jin Cao
Junchao Ma
Junfeng Han
Xin Liu
Hong Lu
Dong Sun
Wende Xiao
Youguo Shi
Yugui Yao
Yuan He
Source :
Nature Communications, Vol 10, Iss 1, Pp 1-7 (2019)
Publication Year :
2019
Publisher :
Nature Publishing Group, 2019.

Abstract

Photo sensing and energy harvesting based on exotic properties of quantum materials and new operation principles have great potentials to break the fundamental performance limit of conventional photodetectors and solar cells. As topological nontrivial materials, Weyl semimetals have demonstrated novel optoelectronic properties that promise potential applications in photo detection and energy harvesting arising from their gapless linear dispersion near Weyl nodes and Berry field enhanced nonlinear optical effect at the vicinity of Weyl nodes. In this work, we demonstrate robust photocurrent generation from charge separation of photoexctied electron-hole pairs at the edge of Td-WTe2, a type-II Weyl semimetal, due to crystalline-symmetry breaking along certain crystal fracture directions and possibly enhanced by robust fermi-arc type surface states. Using scanning photocurrent microscopy (SPCM) measurements, we further demonstrate that the edge current response is robust over a wide excitation photon energy. We find that this robust feature is highly generic, and shall arise universally in a wide class of quantum materials with similar crystal symmetries. In addition, possible connections between these edge photocurrents and topological properties of Weyl semimetals are explored. The robust and generic edge current response demonstrated in this work provides a new type of charge separation mechanism for photosensing and energy harvesting over broad wavelength range.

Details

Language :
English
ISSN :
20411723
Volume :
10
Issue :
1
Database :
OpenAIRE
Journal :
Nature Communications
Accession number :
edsair.doi.dedup.....81add0b17fe46c3239d0ae5279113933
Full Text :
https://doi.org/10.1038/s41467-019-13713-1