论文标题

在二维准晶体中依赖层依赖性拓扑阶段

Layer-Dependent Topological Phase in a Two-Dimensional Quasicrystal and Approximant

论文作者

Cain, Jeffrey D., Azizi, Amin, Conrad, Matthias, Griffin, Sinéad M., Zettl, Alex

论文摘要

材料的电子和拓扑特性来自晶体对称性和维度之间的相互作用。同时,通过较低的材料系统中的准静脉排序引入“禁止”对称性,有望出现新的物理现象。在这里,我们隔离了二维葡萄乳元素准晶体和近似物,并研究了相关的电子和拓扑特性。用标准的去角质技术分离出具有分层金属二甲元化的材料的超薄二维层,其成分接近TA1.6TE,并通过电子衍射和原子分辨率扫描透明透射电子显微镜进行研究。对准晶体TA21TE13的大型单位细胞晶体近似值的密度功能理论的计算和对称分析揭示了准晶体中对称性受保护的淋巴结杂交的存在,并且在近似阶段的存在和近似阶段的存在,它们的存在是可按层数调谐的。我们的研究为准晶体低维材料的物理探索提供了一个平台,以及电子系统中拓扑,维度和对称性的互连性质。

Electronic and topological properties of materials are derived from the interplay between crystalline symmetry and dimensionality. Simultaneously introducing 'forbidden' symmetries via quasiperiodic ordering with low-dimensionality into a material system promises the emergence of new physical phenomena. Here, we isolate a two-dimensional chalcogenide quasicrystal and approximant, and investigate associated electronic and topological properties. Ultra-thin two-dimensional layers of the materials with a composition close to Ta1.6Te, derived from a layered transition metal dichalcogenide, are isolated with standard exfoliation techniques and investigated with electron diffraction and atomic-resolution scanning transmission electron microscopy. Density functional theory calculations and symmetry analysis of the large unit-cell crystalline approximant of the quasicrystal Ta21Te13 reveal the presence of symmetry protected nodal crossings in the quasicrystalline and approximate phases whose presence is tunable by layer number. Our study provides a platform for the exploration of physics in quasicrystalline low-dimensional materials and the interconnected nature of topology, dimensionality and symmetry in electronic systems.

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