Three-dimensional ultrafast charge-density-wave dynamics in CuTe

Author:

Nhat Quyen Nguyen,Tzeng Wen-Yen,Hsu Chih-EnORCID,Lin I-An,Chen Wan-Hsin,Jia Hao-Hsiang,Wang Sheng-Chiao,Liu Cheng-En,Chen Yu-Sheng,Chen Wei-Liang,Chou Ta-Lei,Wang I-Ta,Kuo Chia-Nung,Lin Chun-LiangORCID,Wu Chien-Te,Lin Ping-Hui,Weng Shih-ChangORCID,Cheng Cheng-MawORCID,Kuo Chang-Yang,Tu Chien-Ming,Chu Ming-WenORCID,Chang Yu-Ming,Lue Chin Shan,Hsueh Hung-ChungORCID,Luo Chih-WeiORCID

Abstract

AbstractCharge density waves (CDWs) involved with electronic and phononic subsystems simultaneously are a common quantum state in solid-state physics, especially in low-dimensional materials. However, CDW phase dynamics in various dimensions are yet to be studied, and their phase transition mechanism is currently moot. Here we show that using the distinct temperature evolution of orientation-dependent ultrafast electron and phonon dynamics, different dimensional CDW phases are verified in CuTe. When the temperature decreases, the shrinking of c-axis length accompanied with the appearance of interchain and interlayer interactions causes the quantum fluctuations (QF) of the CDW phase until 220 K. At T < 220 K, the CDWs on the different ab-planes are finally locked with each other in anti-phase to form a CDW phase along the c-axis. This study shows the dimension evolution of CDW phases in one CDW system and their stabilized mechanisms in different temperature regimes.

Funder

Ministry of Education (Ministry of Education, Republic of China

Ministry of Science and Technology, Taiwan

Publisher

Springer Science and Business Media LLC

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