Type-II Symmetry-Protected Topological Dirac Semimetals

The recent proposal of the type-II Weyl semimetal state has attracted significant interest. In this Letter, we propose the concept of the three-dimensional type-II Dirac fermion and theoretically identify this new symmetry-protected topological state in the large family of transition-metal icosageni...

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Veröffentlicht in:Physical review letters 2017-07, Vol.119 (2), p.026404-026404, Article 026404
Hauptverfasser: Chang, Tay-Rong, Xu, Su-Yang, Sanchez, Daniel S, Tsai, Wei-Feng, Huang, Shin-Ming, Chang, Guoqing, Hsu, Chuang-Han, Bian, Guang, Belopolski, Ilya, Yu, Zhi-Ming, Yang, Shengyuan A, Neupert, Titus, Jeng, Horng-Tay, Lin, Hsin, Hasan, M Zahid
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Sprache:eng
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Zusammenfassung:The recent proposal of the type-II Weyl semimetal state has attracted significant interest. In this Letter, we propose the concept of the three-dimensional type-II Dirac fermion and theoretically identify this new symmetry-protected topological state in the large family of transition-metal icosagenides, MA_{3} (M=V, Nb, Ta; A=Al, Ga, In). We show that the VAl_{3} family features a pair of strongly Lorentz-violating type-II Dirac nodes and that each Dirac node can be split into four type-II Weyl nodes with chiral charge ±1 via symmetry breaking. Furthermore, we predict that the Landau level spectrum arising from the type-II Dirac fermions in VAl_{3} is distinct from that of known Dirac or Weyl semimetals. We also demonstrate a topological phase transition from a type-II Dirac semimetal to a quadratic Weyl semimetal or a topological crystalline insulator via crystalline distortions.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.119.026404