反铁磁性
单层
凝聚态物理
Dirac(视频压缩格式)
直线(几何图形)
超短脉冲
材料科学
物理
激光器
光学
纳米技术
量子力学
几何学
数学
中微子
作者
Zhen Gao,Fengxian Ma,Ziming Zhu,Qin Zhang,Ying Liu,Yalong Jiao,Aijun Du
出处
期刊:Nano Letters
[American Chemical Society]
日期:2024-08-22
卷期号:24 (35): 10964-10971
标识
DOI:10.1021/acs.nanolett.4c02914
摘要
Two-dimensional (2D) antiferromagnetic (AFM) materials boasting a high Néel temperature (TN), high carrier mobility, and fast spin response under an external field are in great demand for efficient spintronics. Herein, we theoretically present the MoB3 monolayer as an ideal 2D platform for AFM spintronics. The AFM MoB3 monolayer features a symmetry-protected, 4-fold degenerate Dirac nodal line (DNL) at the Fermi level. It demonstrates a high magnetic anisotropy energy of 865 μeV/Mo and an ultrahigh TN of 1050 K, one of the highest recorded for 2D AFMs. Importantly, we reveal the ultrafast demagnetization of AFM MoB3 under laser irradiation, which induces a rapid transition from a DNL semimetallic state to a metallic state on the time scale of hundreds of femtoseconds. This work presents an effective method for designing advanced spintronics using 2D high-temperature DNL semimetals and opens up a new idea for ultrafast modulation of magnetization in topological semimetals.
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