\begin{document}$ \varGamma $\end{document} point, which is different from the Dirac state formed by the pz orbital reported previously. In addition, it can still retain its original topological properties even if strongly hybridized with the substrate. The calculated phonon spectrum shows no imaginary frequency in the entire Brillouin zone, indicating that the monolayer BaPb system is dynamically stable. By using Monte Carlo simulation, we determine the Curie temperature of BaPb monolayer toreach up to 378 K. We also calculate the magnetic anisotropy energy of the BaPb cell, defined as \begin{document}$ \Delta E={E_{100}}-{E_{001}} $\end{document}. Here, we consider two magnetization easy-axis directions, [100] and [001]. To our surprise, the MAE of monolayer BaPb is as high as 52.01 meV/cell by considering the spin-orbit coupling effect. Furthermore, the nontrivial band gap is opened with a magnitude of 177.39 meV when the spin-orbit coupling effect is included. The calculations of Berry curvature and edge states further prove that the monolayer BaPb system can realize the quantum anomalous Hall state. This discovery indicates that the monolayer BaPb materials can be used as a candidate for quantum anomalous Hall effect materials, thereby promoting the development of spintronics."> - 必威体育下载

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Citation:

    Zhang Wei-Xi, Li Yong, Tian Chang-Hai, She Yan-Chao
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    • Abstract views:4010
    • PDF Downloads:115
    • Cited By:0
    Publishing process
    • Received Date:04 January 2021
    • Accepted Date:17 March 2021
    • Available Online:07 June 2021
    • Published Online:05 August 2021

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