半金属
Dirac(视频压缩格式)
迪拉克费米子
齐次空间
点反射
物理
密度泛函理论
电子能带结构
电子结构
几何相位
凝聚态物理
费米子
带隙
材料科学
量子力学
几何学
数学
中微子
作者
Seoung‐Hun Kang,Wei Luo,Sinchul Yeom,Yaling Zheng,Mina Yoon
标识
DOI:10.1103/physrevmaterials.7.124202
摘要
Using an evolutionary algorithm in combination with first-principles density-functional theory calculations, we identify a two-dimensional (2D) ${\mathrm{CaP}}_{3}$ monolayer as a new Dirac semimetal due to inversion and nonsymmorphic spatial symmetries of the structure. This new topological material, composed of light elements, exhibits high structural stability (higher than the phase known in the literature), which is confirmed by thermodynamic and kinetic stability analysis. Moreover, it satisfies the electron filling criteria, so that its Dirac state is located near the Fermi level. The existence of the Dirac state predicted by the theoretical symmetry analysis is also confirmed by first-principles electronic band structure calculations. We find that the energy position of the Dirac state can be tuned by strain, while the Dirac state is unstable against an external electric field since it breaks the spatial inversion symmetry. Our findings should be instrumental in the development of 2D Dirac fermions based on light elements for their application in nanoelectronic devices and topological electronics.
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