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Temperature-Induced Lifshitz Transition and Possible Excitonic Instability in ZrSiSe

  • F. C. Chen
  • , Y. Fei
  • , S. J. Li
  • , Q. Wang
  • , X. Luo
  • , J. Yan
  • , W. J. Lu
  • , P. Tong
  • , W. H. Song
  • , X. B. Zhu
  • , L. Zhang
  • , H. B. Zhou
  • , F. W. Zheng
  • , P. Zhang
  • , A. L. Lichtenstein
  • , M. I. Katsnelson
  • , Y. Yin
  • , Ning Hao
  • , Y. P. Sun
  • Chinese Academy of Sciences
  • University of Science and Technology of China
  • Zhejiang University
  • IAPCM
  • Beijing University of Chemical Technology
  • Qufu Normal University
  • University of Hamburg
  • Ural Federal University
  • Radboud University Nijmegen
  • Nanjing University

科研成果: 期刊稿件文章同行评审

摘要

The nodal-line semimetals have attracted immense interest due to the unique electronic structures such as the linear dispersion and the vanishing density of states as the Fermi energy approaching the nodes. Here, we report temperature-dependent transport and scanning tunneling microscopy (spectroscopy) [STM(S)] measurements on nodal-line semimetal ZrSiSe. Our experimental results and theoretical analyses consistently demonstrate that the temperature induces Lifshitz transitions at 80 and 106 K in ZrSiSe, which results in the transport anomalies at the same temperatures. More strikingly, we observe a V-shaped dip structure around Fermi energy from the STS spectrum at low temperature, which can be attributed to co-effect of the spin-orbit coupling and excitonic instability. Our observations indicate the correlation interaction may play an important role in ZrSiSe, which owns the quasi-two-dimensional electronic structures.

源语言英语
期刊论文编号236601
期刊Physical Review Letters
124
23
DOI
出版状态已出版 - 12 6月 2020
已对外发布

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