Wang Licheng, Yao Xiaojing, Sun Yi, Wu Weikang, He Ailei, Liu Yongjun, Zhang Xiuyun
College of Physics Science and Technology & Microelectronics Industry Research Institute, Yangzhou University, Yangzhou 225002, China.
College of Physics and Hebei Advanced Thin Films Laboratory, Hebei Normal University, Shijiazhuang 050024, China.
Nanoscale. 2022 Sep 2;14(34):12491-12497. doi: 10.1039/d2nr03236h.
Topological and ferromagnetic features in two-dimensional (2D) materials have attracted considerable interest due to their excellent physical properties. 2D Weyl half-semimetals (WHSMs) are excellent platforms to study both properties. In this study, we predicted a 2D ferromagnetic WHSM, VB, first-principles calculations. The VB monolayer displays ultra-high thermodynamic stability. It has a couple of fully spin-polarized Weyl nodal points in the spin-down channel. The Weyl points are found to be protected by vertical mirror and antiunitary symmetries, which are robust against spin-orbit coupling (SOC) and in-plane strains. Our study not only discovers an intrinsic ferromagnetic 2D WSHM material with Weyl points around the Fermi level but also provides a potential candidate with good stability for spintronic devices.
二维(2D)材料中的拓扑和铁磁特性因其优异的物理性质而引起了广泛关注。二维外尔半金属(WHSMs)是研究这两种性质的优秀平台。在本研究中,我们通过第一性原理计算预测了一种二维铁磁WHSM,即VB。VB单层表现出超高的热力学稳定性。它在自旋向下通道中有几个完全自旋极化的外尔节点。发现外尔点受到垂直镜面和反幺正对称性的保护,这些对称性对自旋轨道耦合(SOC)和面内应变具有鲁棒性。我们的研究不仅发现了一种在费米能级附近具有外尔点的本征铁磁二维WSHM材料,还为自旋电子器件提供了一种具有良好稳定性的潜在候选材料。