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High-resolution scanning tunneling microscopy investigation of the (12110) and (10000) two-fold symmetric d-Al-Ni-Co quasicrystalline surfaces

机译:(12110)和(10000)双重对称d-Al-Ni-Co准晶体表面的高分辨率扫描隧道显微镜研究

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摘要

The d-Al-Ni-Co quasicrystal exhibits two crystallographically inequivalent twofold symmetric planes: the {10000} and {12110} surface planes. In particular the twofold symmetric surfaces are very interesting since they are spanned by perpendicular periodic and aperiodic axes. We investigated the (12110) surface of two different compositions d-Al70Ni15Co15 and d-Al72.9Ni10.4Co16.7 and the (10000) d-Al72.9Ni10.4Co16.7 surface by means of low-temperature (5 K) scanning tunneling microscopy (STM) in ultrahigh vacuum. All three surfaces are characterized with atomic resolution and display large and flat terraces with a columnar structure along the periodic axis. Both compositions of the (12110) d-Al-Ni-Co STM investigations revealed that the surface is faceted into {12110} and {10000} facets with a 1: 1 area ratio. The (12110) facets represent the bulk periodicity of 0.4 nm within the prominent columnar structure which is attributed to a stacking of Al dimers. The sequence of the columnar structure along the aperiodic axis as well as the step heights between the (12110) surfaces could be attributed to the pentagonal tiling edge length of the bulk model. Furthermore, the (12110) surface is identified as one of the densest planes in the bulk model possessing a slightly lower Al concentration as the nominal bulk composition. However, a difference in the fine structure within the columns is observed between the two investigated compositions. The (10000) facet presents an identical surface structure as the unfaceted (10000) surface of the quasicrystal. At the (10000) surface two terraces with different surface structures are identified and compared to the bulk model. One of them shows a bias voltage depending structure. In contrast to the bulk model the minimal observed periodicity on the (10000) surface is doubled to 0.8 nm. On the other hand the aperiodic step height sequence and the order of the columnar motifs along the aperiodic axis are in agreement with the bulk model. The height distribution analysis of the (10000) surfaces exhibits that the surface topmost layer consists of planes which are less dense than the (12110) surface planes.
机译:d-Al-Ni-Co准晶体表现出两个晶体学上不相等的双重对称平面:{10000}和{12110}表面平面。特别是双重对称表面非常有趣,因为它们被垂直的周期轴和非周期轴所覆盖。我们通过低温(5 K)扫描研究了两种不同成分d-Al70Ni15Co15和d-Al72.9Ni10.4Co16.7的(12110)表面以及(10000)d-Al72.9Ni10.4Co16.7表面超高真空下的隧道显微镜(STM)。所有这三个表面均具有原子分辨率特征,并沿周期轴显示大而平坦的梯级结构,呈柱状结构。 (12110)d-Al-Ni-Co STM研究的两种成分均表明,该表面以1:1的面积比切成{12110}和{10000}小平面。 (12110)刻面代表突出的柱状结构内0.4 nm的整体周期性,这归因于Al二聚体的堆积。沿非周期性轴的柱状结构的顺序以及(12110)表面之间的台阶高度可归因于整体模型的五边形平铺边缘长度。此外,(12110)表面被认为是整体模型中最密集的平面之一,其铝浓度略低于名义体积组成。然而,在所研究的两种组合物之间观察到塔内精细结构的差异。 (10000)面的表面结构与准晶体的未刻面(10000)的表面相同。在(10000)曲面处,识别出具有不同表面结构的两个平台,并将其与整体模型进行比较。其中之一显示了依赖于偏置电压的结构。与本体模型相比,在(10000)表面上观察到的最小周期性增加了一倍,达到0.8 nm。另一方面,非周期性台阶高度序列和沿非周期性轴的柱状基序的顺序与整体模型一致。 (10000)个表面的高度分布分析显示,表面最上层由密度小于(12110)个表面平面的平面组成。

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