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1D topological phases in transition-metal monochalcogenide nanowires

机译:1 d拓扑阶段过渡金属monochalcogenide nanowires

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摘要

The Su-Schrieffer-Heeger (SSH) model is a prototypical one-dimensional (1D) diatomic lattice model for non-trivial topological phases and topological excitations. Theoretically, many variations and extensions of the SSH model have been proposed and explored to better understand the novel aspects of topological physics in low dimensions on the nanoscale. However, the outstanding challenge remains to find real nanomaterials with robust structural stability for realizing the 1D topological states. Here, we develop an extended version of the SSH model with multi-atomic bases of four, six and eight atoms and an imposed screw rotation symmetry. Furthermore, based on first-principles calculations, we demonstrate the realization of this model in transition metal monochalcogenide M6X6(M = Mo and W; X = S, Se and Te) nanowires. The topological features of the doped M(6)X(6)nanowires are confirmed with non-trivial edge modes and e/2 fractional charges, representative of the 1D non-trivial Zak phase. Our finding not only sheds new light on our fundamental understanding of 1D topological physics, but also significantly extends the scope of 1D topological materials that will attract immediate experimental interest, since isolated M(6)X(6)nanowires have already been synthesized in experiments.
机译:是一个Su-Schrieffer-Heeger (SSH)模型典型的一维(1 d)双原子非平凡的晶格模型拓扑阶段和拓扑励磁。SSH模型的变化和扩展被提出和探讨,以便更好地理解物理拓扑的小说方面低尺寸在纳米级。杰出的挑战仍然找到真实的纳米材料与健壮的结构稳定性实现1 d拓扑状态。开发一个版本的SSH模型与扩展multi-atomic基地的4、6和8个原子和一个对螺杆旋转对称。此外,基于采用计算,我们演示的实现在过渡金属monochalcogenide这个模型M6X6 (M =莫和W;掺杂的拓扑特征(6) X(6)纳米线与非平凡的证实边缘模式和e / 2部分费用,代表1 d非平凡的Zak阶段。我们的发现不仅启示了我们1 d拓扑的基本理解物理,也大大扩展了范围1 d拓扑材料将吸引直接的实验兴趣,因为孤立M (6) X(6)纳米线已经被合成在实验。

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