Li Gui-Gui, Xie Rong-Rong, Ding Li-Juan, Ji Wei-Xiao, Li Sheng-Shi, Zhang Chang-Wen, Li Ping, Wang Pei-Ji
Spintronics Institute & School of Physics and Technology, University of Jinan, Jinan, Shandong 250022, People's Republic of China.
Phys Chem Chem Phys. 2021 Jun 2;23(21):12068-12074. doi: 10.1039/d1cp00812a.
Two-dimensional (2D) Weyl semi-half-metals (WSHMs) have attracted tremendous interest for their fascinating properties combining half-metallic ferromagnetism and Weyl fermions. In this work, we present a NiCS3 monolayer as a new 2D WSHM material using systematic first-principles calculations. It has 12 fully spin-polarized Weyl nodal points in one spin channel with a Fermi velocity of 3.18 × 105 m s-1 and a fully gapped band structure in the other spin channel. It exhibits good mechanical and thermodynamic stabilities and the Curie temperature is estimated to be 403 K. The Weyl points are protected by vertical mirror plane symmetry along Γ-K, and each of them remains gapless even under spin-orbit coupling when the direction of spin is perpendicular to the Γ-K line including the Weyl point, which makes it possible to control the opening and closing of Weyl points by applying and rotating external magnetic fields. Our work not only provides a promising 2D WSHM material to explore the fundamental physics of symmetry protected ferromagnetic Weyl fermions, but also reveals a potential mechanism of band engineering of 2D WSHM materials in spintronics.
二维(2D)外尔半金属(WSHMs)因其兼具半金属铁磁性和外尔费米子的迷人特性而引起了极大的关注。在这项工作中,我们通过系统的第一性原理计算,提出了一种新型的二维WSHM材料——NiCS3单层。它在一个自旋通道中有12个完全自旋极化的外尔节点,费米速度为3.18×105米/秒,在另一个自旋通道中有完全带隙的能带结构。它表现出良好的力学和热稳定性,居里温度估计为403K。外尔点由沿Γ-K的垂直镜面反射对称性保护,当自旋方向垂直于包含外尔点的Γ-K线时,即使在自旋轨道耦合下,每个外尔点也保持无隙,这使得通过施加和旋转外部磁场来控制外尔点的打开和关闭成为可能。我们的工作不仅为探索对称保护的铁磁外尔费米子的基本物理提供了一种有前景的二维WSHM材料,还揭示了二维WSHM材料在自旋电子学中的能带工程潜在机制。