半金属
理想(伦理)
Dirac(视频压缩格式)
轨道(动力学)
凝聚态物理
物理
拓扑(电路)
理论物理学
量子力学
政治学
数学
法学
工程类
组合数学
航空航天工程
带隙
中微子
作者
Masahiro Sato,Juba Bouaziz,Shuntaro Sumita,Shingo Kobayashi,Ikuma Tateishi,Stefan Blügel,Akira Furusaki,Motoaki Hirayama
标识
DOI:10.1038/s43246-024-00635-9
摘要
Abstract Topological semimetals, known for their intriguing properties arising from band degeneracies, have garnered significant attention. However, the discovery of a material realization and the detailed characterization of spinless Dirac semimetals have not yet been accomplished. Here, we propose from first-principles calculations that the RE 8 Co X 3 group ( RE = rare earth elements, X = Al, Ga, or In) contains ideal spinless Dirac semimetals whose Fermi surfaces are fourfold degenerate band-crossing points (without including spin degeneracy). Despite the lack of space inversion symmetry in these materials, Dirac points are formed on the rotation-symmetry axis due to accidental degeneracies of two bands corresponding to different 2-dimensional irreducible representations of the C 6 v group. We also investigate, through first-principles calculations and effective model analysis, various phase transitions caused by lattice distortion or elemental substitutions from the Dirac semimetal phase to distinct topological semimetallic phases such as nonmagnetic linked-nodal-line and Weyl semimetals (characterized by the second Stiefel–Whitney class) and ferromagnetic Weyl semimetals.
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