Wang Yanxia, Xing Jianpei, Zhao Ying, Wang Yi, Zhao Jijun, Jiang Xue
Key Laboratory of Materials Modification by Laser, Ion and Electron Beams, Dalian University of Technology, Ministry of Education, Dalian, 116024, China.
Guangdong Provincial Key Laboratory of Quantum Engineering and Quantum Materials, School of Physics, South China Normal University, Guangzhou, 510006, China.
Adv Sci (Weinh). 2024 Jul;11(25):e2401048. doi: 10.1002/advs.202401048. Epub 2024 Apr 22.
Topological magnetic states are promising information carriers for ultrahigh-density and high-efficiency magnetic storage. Recent advances in two-dimensional (2D) magnets provide powerful platforms for stabilizing various nanometer-size topological spin textures within a wide range of magnetic field and temperature. However, non-centrosymmetric 2D magnets with broken inversion symmetry are scarce in nature, making direct observations of the chiral spin structure difficult, especially for antiferromagnetic (AFM) skyrmions. In this work, it is theoretically predicted that intrinsic AFM skyrmions can be easily triggered in XY-type honeycomb magnet NiPS monolayer by alloying of Cr atoms, due to the presence of a sizable Dzyaloshinskii-Moriya interaction. More interestingly, the diameter of the AFM skyrmions in NiCrPS decreases from 12 to 4.4 nm as the external magnetic field increases and the skyrmion phases remain stable up to an external magnetic field of 4 T. These results highlight an effective strategy to generate and modulate the topological spin texture in 2D magnets by alloying with magnetic element.
拓扑磁态是用于超高密度和高效磁存储的有前景的信息载体。二维(2D)磁体的最新进展为在广泛的磁场和温度范围内稳定各种纳米尺寸的拓扑自旋纹理提供了强大平台。然而,自然界中具有破缺反演对称性的非中心对称2D磁体稀缺,使得直接观察手性自旋结构变得困难,特别是对于反铁磁(AFM)斯格明子。在这项工作中,理论预测由于存在可观的Dzyaloshinskii-Moriya相互作用,通过Cr原子合金化可以在XY型蜂窝磁体NiPS单层中轻松触发本征AFM斯格明子。更有趣的是,随着外部磁场增加,NiCrPS中AFM斯格明子的直径从12纳米减小到4.4纳米,并且斯格明子相在高达4 T的外部磁场下仍保持稳定。这些结果突出了一种通过与磁性元素合金化来产生和调制2D磁体中拓扑自旋纹理的有效策略。