Literature DB >> 31971774

Realization of Symmetry-Enforced Two-Dimensional Dirac Fermions in Nonsymmorphic α-Bismuthene.

Pawel J Kowalczyk1, Simon A Brown2, Tobias Maerkl2, Qiangsheng Lu3, Ching-Kai Chiu4, Ying Liu5, Shengyuan A Yang5, Xiaoxiong Wang6, Ilona Zasada1, Francesca Genuzio7, Tevfik Onur Menteş7, Andrea Locatelli7, Tai-Chang Chiang8,9, Guang Bian3.   

Abstract

Two-dimensional (2D) Dirac-like electron gases have attracted tremendous research interest ever since the discovery of free-standing graphene. The linear energy dispersion and nontrivial Berry phase play a pivotal role in the electronic, optical, mechanical, and chemical properties of 2D Dirac materials. The known 2D Dirac materials are gapless only within certain approximations, for example, in the absence of spin-orbit coupling (SOC). Here, we report a route to establishing robust Dirac cones in 2D materials with nonsymmorphic crystal lattice. The nonsymmorphic symmetry enforces Dirac-like band dispersions around certain high-symmetry momenta in the presence of SOC. Through μ-ARPES measurements, we observe Dirac-like band dispersions in α-bismuthene. The nonsymmorphic lattice symmetry is confirmed by μ-low-energy electron diffraction and scanning tunneling microscopy. Our first-principles simulations and theoretical topological analysis demonstrate the correspondence between nonsymmorphic symmetry and Dirac states. This mechanism can be straightforwardly generalized to other nonsymmorphic materials. The results enlighten the search of symmetry-enforced Dirac fermions in the vast uncharted world of nonsymmorphic 2D materials.

Entities:  

Keywords:  Dirac materials; bismuthene; nonsymmorphic symmetry; spin−orbit coupling; symmetry-enforced states

Year:  2020        PMID: 31971774     DOI: 10.1021/acsnano.9b08136

Source DB:  PubMed          Journal:  ACS Nano        ISSN: 1936-0851            Impact factor:   15.881


  2 in total

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

Authors:  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
Journal:  Nat Commun       Date:  2022-08-06       Impact factor: 17.694

Review 2.  Electronic Structures of Polymorphic Layers of Borophane.

Authors:  Ikuma Tateishi; Xiaoni Zhang; Iwao Matsuda
Journal:  Molecules       Date:  2022-03-10       Impact factor: 4.411

  2 in total

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