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Realization of unpinned two-dimensional dirac states in antimony atomic layers

  • Qiangsheng Lu
  • , Jacob Cook
  • , Xiaoqian Zhang
  • , Kyle Y. Chen
  • , Matthew Snyder
  • , Duy Tung Nguyen
  • , P. V.Sreenivasa Reddy
  • , Bingchao Qin
  • , Shaoping Zhan
  • , Li Dong Zhao
  • , Pawel J. Kowalczyk
  • , Simon A. Brown
  • , Tai Chang Chiang
  • , Shengyuan A. Yang
  • , Tay Rong Chang
  • , Guang Bian

研究成果: Article同行評審

25   連結會在新分頁中開啟 引文 斯高帕斯(Scopus)

摘要

Two-dimensional (2D) Dirac states with linear dispersion have been observed in graphene and on the surface of topological insulators. 2D Dirac states discovered so far are exclusively pinned at high-symmetry points of the Brillouin zone, for example, surface Dirac states at Γ ¯ in topological insulators Bi2Se(Te)3 and Dirac cones at K and K points in graphene. The low-energy dispersion of those Dirac states are isotropic due to the constraints of crystal symmetries. In this work, we report the observation of novel 2D Dirac states in antimony atomic layers with phosphorene structure. The Dirac states in the antimony films are located at generic momentum points. This unpinned nature enables versatile ways such as lattice strains to control the locations of the Dirac points in momentum space. In addition, dispersions around the unpinned Dirac points are highly anisotropic due to the reduced symmetry of generic momentum points. The exotic properties of unpinned Dirac states make antimony atomic layers a new type of 2D Dirac semimetals that are distinct from graphene.

原文English
文章編號4603
期刊Nature communications
13
發行號1
DOIs
出版狀態Published - 2022 12月

All Science Journal Classification (ASJC) codes

  • 一般化學
  • 一般生物化學,遺傳學和分子生物學
  • 一般物理與天文學

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