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Full real-space analysis of a dodecagonal quasicrystal

机译:十二边形准晶体的完整实空间分析

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摘要

The atomically resolved real-space structure of a long-range-ordered dodecagonal quasicrystal is determined based on scanning tunnelling microscopy. For the BaTiO3-derived oxide quasicrystal which spontaneously forms on a Pt(111) surface, 8100 atomic positions have been determined and are compared with an ideal Niizeki–Gähler tiling. Although the Niizeki–Gähler tiling has a complex three-element structure, the abundance of the triangle, square and rhomb tiling elements in the experimental data closely resembles the ideal frequencies. Similarly, the frequencies of all possible next-neighbour tiling combinations are, within the experimental uncertainty, identical to the ideal tiling. The angular and orientational distributions of all individual tiling elements show the characteristics of the dodecagonal quasicrystal. In contrast, the analysis of the orientation of characteristic and more complex tiling combinations indicates the partial decomposition of the quasicrystal into small patches with locally reduced symmetry. These, however, preserve the long-range quasicrystal coherence. The symmetry reduction from dodecagonal to sixfold is assigned to local interaction with the threefold substrate. It leads to atomic flips which preserve the number of quasicrystal tiling elements.
机译:基于扫描隧道显微镜确定长程十二边形准晶体的原子分辨的实空间结构。对于在Pt(111)表面上自发形成的BaTiO3衍生的氧化物准晶体,已确定8100个原子位置,并将其与理想的Niizeki-Gähler平铺进行比较。尽管Niizeki-Gähler拼贴具有复杂的三元素结构,但实验数据中三角形,正方形和菱形拼贴元素的丰度与理想频率非常相似。同样,在实验不确定性范围内,所有可能的相邻邻居拼贴组合的频率都与理想拼贴相同。所有单个拼贴元素的角度和方向分布都显示了十二边形准晶体的特性。相反,对特征和更复杂的拼贴组合的方向进行的分析表明,准晶体部分分解为局部对称性降低的小块。但是,这些保留了长距离的准晶体相干性。从十二边形到六边形的对称性降低归因于与三重底物的局部相互作用。它导致原子翻转,从而保留了准晶体拼贴元素的数量。

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