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Observation of charge density wave in layered hexagonal Cu1.89Te single crystal

Authors :
Wenshuai Gao
Zheng Chen
Wensen Wei
Chao Yan
Shasha Wang
Jin Tang
Ranran Zhang
Lixun Cheng
Pengfei Nan
Jie Wang
Yuyan Han
Chuanying Xi
Binghui Ge
Lin He
Haifeng Du
Wei Ning
Xiangde Zhu
Mingliang Tian
Source :
Chinese Physics Letters.
Publication Year :
2022
Publisher :
IOP Publishing, 2022.

Abstract

We report comprehensive transport, electron microscopy and Raman spectroscopy studies on the transition-metal chalcogenides Cu1.89Te single crystals. The metallic Cu1.89Te displays successive metal-semiconductor transitions at low temperatures and almost ideal linear MR when magnetic field up to 33T. Through the electron diffraction patterns, the stable room temperature phase is identified as a 3×3×2 modulated superstructure based on Nowotny hexagonal structure. The superlattice spots of Transmission electron microscopy and Scanning tunneling microscopy clearly show the structural transitions from the room temperature Commensurate Ⅰ (C-Ⅰ) phase to the low temperature Commensurate Ⅱ (C-Ⅱ) phase. All the results can be understood in term of charge density wave (CDW) instability, yielding intuitive evidences for the CDW formations in Cu1.89Te. The additional Raman modes below room temperature further reveal that the zone-folded phonon modes may play an important role on the CDW transitions. Our research sheds light on the novel electron features of Cu1.89Te at low temperature, and may provide potential applications for future nano-devices.

Subjects

Subjects :
General Physics and Astronomy

Details

ISSN :
17413540 and 0256307X
Database :
OpenAIRE
Journal :
Chinese Physics Letters
Accession number :
edsair.doi.dedup.....d2038591a52cb020ab9e9c1476dc627d