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Antiferromagnetic topological insulator in stable exfoliated two-dimensional materials

机译:稳定剥落二维材料中的反铁磁拓扑绝缘体

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摘要

The antiferromagnetic topological insulator (AFM TI) and two-dimensional (2D) magnet constitute two of the most active fields for hosting prominent physical phenomena and significant advances in novel spintronic devices. However, the 2D AFM TI is scarce. Here, we propose a tight-binding model of the 2D AFM square lattice to demonstrate the emergence of the 2D AFM TI protected by a nonsymmorphic symmetry that is a combination of the twofold rotation symmetry and half-lattice translation. Moreover, based on first-principles calculations, we investigate in total 57 tetragonal antiferromagnets in the crystal structure of outstanding AFM CuMnAs to realize our proposal, and nine experimentally feasible candidates are predicted to be intrinsic 2D nonsymmorphic AFM TIs characterized by the nonzero topological invariant Z_2 = 1 and gapless edge states. The presented results not only greatly extend the scope of magnetic topological slates in two dimensions but also put forward potential applications in AFM spintronics.
机译:反铁磁拓扑绝缘体(AFM TI)和二维(2D)磁体构成用于托管突出物理现象的两个最活跃的领域,并且在新颖的旋转式设备中的显着进展。但是,2D AFM TI很少。这里,我们提出了2D AFM方形格子的紧密结合模型,以证明由非对称对称保护的2D AFM TI的出现,这是双重旋转对称和半格平移的组合。此外,基于第一原理计算,我们在突出的AFM级粪便晶体结构中的总共57个四方反光磁体进行了调查,以实现我们的建议,预计九个实验可行的候选者是非零拓扑不变性Z_2的特征的内在的2D非无细胞AFM TIS = 1和无间隙边缘状态。所提出的结果不仅大大延长了两个维度的磁性拓扑板岩的范围,而且还提出了AFM闪光灯中的潜在应用。

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  • 来源
    《Physical review.B.Condensed matter and materials physics》 |2020年第11期|115412.1-115412.6|共6页
  • 作者单位

    School of Physics Stale Key Laboratory of Crystal Materials Shandong University 250100 Jinan China;

    School of Physics Stale Key Laboratory of Crystal Materials Shandong University 250100 Jinan China;

    School of Physics Stale Key Laboratory of Crystal Materials Shandong University 250100 Jinan China;

    School of Physics Stale Key Laboratory of Crystal Materials Shandong University 250100 Jinan China;

    School of Physics Stale Key Laboratory of Crystal Materials Shandong University 250100 Jinan China;

    School of Physics Stale Key Laboratory of Crystal Materials Shandong University 250100 Jinan China;

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