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Sun Hui-Min, He Qing-Lin
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  • The intersection between layered magnetic materials and topological materials combines the advantages of the two, forming a material system with both the magnetic orders and topological properties within the minimum two-dimensional unit, i.e. layered magnetic topological materials. This type of material may host Dirac points, Weyl points, nodal lines, etc. which are associated with helical or chiral electronic states ranging from insulator, semimetal to metal. This results in lots of novel physical problems and effects, which attract much attention of scientists. In this paper, we focus our attention on intrinsic magnetic topological insulator, magnetic Weyl semimetal, magnetic Dirac semimetal, and take them for example to briefly review the interplay between magnetic orders and topological orders and recent experimental results. This emergent area requires further studies to explore more new material candidates, which is a challenging frontier of condensed matter physics.
        Corresponding author:He Qing-Lin,qlhe@pku.edu.cn
      • Funds:Project supported by the National Key R&D Program of China (Grant Nos. 2020YFA0308900, 2018YFA0305601), the National Natural Science Foundation of China (Grant No. 11874070), and the Strategic Priority Research Program (B) of Chinese Academy of Sciences (Grant No. XDB28000000)
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    Metrics
    • Abstract views:10608
    • PDF Downloads:1003
    • Cited By:0
    Publishing process
    • Received Date:20 January 2021
    • Accepted Date:11 February 2021
    • Available Online:18 June 2021
    • Published Online:20 June 2021

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