Quantum oscillation and superconductivity study of the layered Weyl semimetal WTe<sub>2</sub> under pressure
ORAL
Abstract
We investigate the electronic properties of transition metal dichalcogenides WTe2 under pressure. WTe2 starts to superconduct at ~30 kbar. At 35 kbar, Tc is about 0.95 K. To figure out the relationship between the pressure-induced superconductivity and Fermi surface, we conduct Shubnikov–de Haas quantum oscillation measurements. At ambient pressure, four dominant peaks are observed, whose frequencies are 97 T, 134 T, 150 T and 172 T respectively. By applying pressure, these frequencies and the associated effective masses increase, suggesting the expansion of Fermi surfaces accompanied with enhanced electron-electron correlation. Moreover, we observe a high frequency at ~2000 T and extract a relatively large effective mass m* of 1.8 me at 35 kbar. The enhanced correlation under pressure revealed by our quantum oscillation study provides new information on understanding the pressure-induced superconductivity in WTe2.
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Publication: None
Presenters
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Wenyan Wang
Chinese University of Hong Kong, The Chinese University of Hong Kong
Authors
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Wenyan Wang
Chinese University of Hong Kong, The Chinese University of Hong Kong
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Jianyu Xie
Chinese University of Hong Kong, The Chinese University of Hong Kong
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Wei Zhang
Chinese University of Hong Kong
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Xinyou Liu
Chinese University of Hong Kong, The Chinese University of Hong Kong
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King Yau Yip
Chinese University of Hong Kong, The Chinese University of Hong Kong
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Yuen Chung Chan
Chinese University of Hong Kong
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Kwing To Lai
Chinese University of Hong Kong, The Chinese University of Hong Kong
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Swee Kuan K Goh
Chinese University of Hong Kong, The Chinese University of Hong Kong