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Realization of an intrinsic ferromagnetic topological state in MnBi8Te13

机译:MNBI8T13中固有铁磁拓扑状态的实现

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Novel magnetic topological materials pave the way for studying the interplay between band topology and magnetism. However, an intrinsically ferromagnetic topological material with only topological bands at the charge neutrality energy has so far remained elusive. Using rational design, we synthesized MnBi8Te13, a natural heterostructure with [MnBisub2/subTesub4/sub] and [Bisub2/subTesub3/sub] layers. Thermodynamic, transport, and neutron diffraction measurements show that despite the adjacent [MnBisub2/subTesub4/sub] being 44.1 ? apart, MnBisub8/subTesub13/sub manifests long-range ferromagnetism below 10.5 K with strong coupling between magnetism and charge carriers. First-principles calculations and angle-resolved photoemission spectroscopy measurements reveal it is an axion insulator with sizable surface hybridization gaps. Our calculations further demonstrate the hybridization gap persists in the two-dimensional limit with a nontrivial Chern number. Therefore, as an intrinsic ferromagnetic axion insulator with clean low-energy band structures, MnBisub8/subTesub13/sub serves as an ideal system to investigate rich emergent phenomena, including the quantized anomalous Hall effect and quantized magnetoelectric effect.
机译:新型磁拓扑材料铺平了研究带拓扑和磁性之间的相互作用的方式。然而,到目前为止,迄今为止,只有电荷中立能量的拓扑频带的内在磁性拓扑材料仍然难以实现。使用理性设计,我们合成MnBi8te13,具有[Mnbi 2 Te 4 ]和[Bi 2 Te 3 ]层。热力学,运输和中子衍射测量表明,尽管相邻的[MnBi 2 Te 4 ]为44.1?分开,Mnbi 8 Te 13 在低于10.5 k以下的远程铁磁性,具有磁性和电荷载流子之间的强耦合。第一原理计算和角度分辨的光曝光光谱测量揭示它是具有相当大的表面杂交间隙的轴绝缘体。我们的计算进一步证明了杂交差距持续存在于具有非活动Chern数的二维极限。因此,作为具有清洁低能量带结构的内在铁磁轴绝缘体,Mnbi 8 Te 13 作为调查富急流现象的理想系统,包括量化的异常大厅效果和量化磁电效应。

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