\begin{document}${v_{\rm F}{(K)}} = 15.8 \times 10^5 \;{\rm m \!\cdot\! s^{-1}}$\end{document} about twice larger than the \begin{document}$ v_{\rm F} $\end{document} of graphene in the vicinity of Fermi level, and six cones at \begin{document}$ K'/2 $\end{document} points with \begin{document}${ v_{\rm F} {(K'/2)}} = 10.1 \times 10^5\;{\rm m \!\cdot\! s^{-1}}$\end{document} close to the graphene's value. These spin-polarized Dirac cones are mostly composed of Cr \begin{document}${\rm d}_{xz}$\end{document} and \begin{document}${\rm d}_{yz}$\end{document} orbitals. The novel electronic structure of CrPSe3 monolayer is also confirmed by the HSE06 functional. A tight-binding model was built based on the Cr-honeycomb structure with two Cr-d orbitals as the basic with the first, second and third nearest-neighboring interactions, further demonstrating that the multiple Dirac cones are protected by the Cr-honeycomb lattice symmetry. Our findings indicate that 2D CrPSe3 monolayer is a candidate with potential applications in the low-dimensional, high speed and temperature spintronics."> Half-metallic magnetism and electronic structures of CrPSe<sub>3</sub> monolayers with multiple Dirac cones<span style="background-color: rgb(255, 255, 255);"><span style="color:#ff0000;">(withdraw)</span></span> - 必威体育下载

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Citation:

    Yang Jun-Tao, Xiong Yong-Chen, Huang Hai-Ming, Luo Shi-Jun
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    • Abstract views:8383
    • PDF Downloads:283
    • Cited By:0
    Publishing process
    • Received Date:22 June 2020
    • Accepted Date:27 July 2020
    • Available Online:30 November 2020
    • Published Online:20 December 2020

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