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Dirac nodal lines and nodal loops in the topological kagome superconductor CsV3Sb5

  • Zhanyang Hao
  • , Yongqing Cai
  • , Yixuan Liu
  • , Yuan Wang
  • , Xuelei Sui
  • , Xiao Ming Ma
  • , Zecheng Shen
  • , Zhicheng Jiang
  • , Yichen Yang
  • , Wanling Liu
  • , Qi Jiang
  • , Zhengtai Liu
  • , Mao Ye
  • , Dawei Shen
  • , Yi Liu
  • , Shengtao Cui
  • , Jiabin Chen
  • , Le Wang
  • , Cai Liu
  • , Junhao Lin
  • Jianfeng Wang*, Bing Huang, Jia Wei Mei*, Chaoyu Chen*
*此作品的通讯作者
  • Southern University of Science and Technology
  • International Quantum Academy
  • China Academy of Engineering Physics
  • CAS - Shanghai Institute of Microsystem and Information Technology
  • University of Science and Technology of China

科研成果: 期刊稿件文章同行评审

摘要

The intertwining of charge order, superconductivity, and band topology has promoted the AV3Sb5 (A=K, Rb, Cs) family of materials to the center of attention in condensed matter physics. Underlying those mysterious macroscopic properties such as giant anomalous Hall conductivity (AHC) and chiral charge density wave is their nontrivial band topology. While there have been numerous experimental and theoretical works investigating the nontrivial band structure and especially the van Hove singularities, the exact topological phase of this family remains to be clarified. In this work, we identify CsV3Sb5 as a Dirac nodal line semimetal based on the observation of multiple Dirac nodal lines and loops close to the Fermi level. Combining photoemission spectroscopy and density functional theory, we identify two groups of Dirac nodal lines along the kz direction and one group of Dirac nodal loops in the A-H-L plane. These nodal loops are located at the Fermi level within the instrumental resolution limit. Importantly, our first-principles analyses indicate that these nodal loops may be a crucial source of the mysterious giant AHC observed. Our results not only provide a clear picture to categorize the band structure topology of this family of materials, but also suggest the dominant role of topological nodal loops in shaping their transport behavior.

源语言英语
文章编号L081101
期刊Physical Review B
106
8
DOI
出版状态已出版 - 15 8月 2022

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