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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Structure and morphology of the tenfold surface of decagonal Al_(71.8)Ni_(14.8)Co_(13.4) in its low-temperature random tiling type-Ⅰ modification
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Structure and morphology of the tenfold surface of decagonal Al_(71.8)Ni_(14.8)Co_(13.4) in its low-temperature random tiling type-Ⅰ modification

机译:十角形Al_(71.8)Ni_(14.8)Co_(13.4)低温随机平铺Ⅰ型修饰的十倍表面的结构和形态

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摘要

We have investigated the structure and morphology of the tenfold surface of decagonal Al_(71.8)Ni_(14.8)Co_(13.4) by highly surface sensitive He atom scattering (HAS), high resolution low energy electron diffraction (SPA-LEED), and low temperature scanning tunneling microscopy (STM). The SPA-LEED patterns reveal more than 500 individual diffraction spots in the k-vector range of |k_‖| < 3 A~(-1). The positions of all observed diffraction spots agree with the surface projections of the reciprocal lattice structure of the type-Ⅰ bulk phase. HAS shows identical spot positions as SPA-LEED, thus demonstrating a top surface layer with long range quasicrystalline order and a reciprocal lattice structure consistent with that of a bulk truncated surface. SPA-LEED peak widths are found to vary between different diffraction orders. Based on an analysis of a randomized Fibonacci sequence, this is linked to the random nature of the tiling of the type-Ⅰ structure. STM measurements reveal a surface morphology characterized by rough single-height steps separating terraces with widths on the order of 100 A. Two different surface terminations are observed, a coarse and a fine one, frequently coexisting on single terraces. The fine structure termination directly reflects the atomic structure of a bulk truncated surface, allowing a random rhombic tiling to be identified. In order to compare diffraction, real-space data, and atomic structure models, the Patterson function and autocorrelation of the surface structure, respectively, are studied. This allows an understanding of the coarse structure termination as consisting of subunits of a few atoms each arranged statistically on sites defined by the atomic tiling of the bulk tenfold planes.
机译:我们已经通过高表面敏感性He原子散射(HAS),高分辨率低能电子衍射(SPA-LEED)和低表面活性研究了十边形Al_(71.8)Ni_(14.8)Co_(13.4)的十倍表面的结构和形态温度扫描隧道显微镜(STM)。 SPA-LEED模式揭示了在|k_‖|的k向量范围内的500多个衍射点。 <3 A〜(-1)。所有观察到的衍射光斑的位置与Ⅰ型本体相的倒易晶格结构的表面投影一致。 HAS显示出与SPA-LEED相同的光斑位置,因此显示了具有长距离准晶序和与大体截断面一致的倒易晶格结构的顶表面层。发现SPA-LEED峰宽在不同衍射级之间变化。根据对随机斐波那契序列的分析,这与Ⅰ型结构平铺的随机性有关。 STM测量揭示了一种表面形态,其特征是粗略的单高度台阶分隔了宽度约为100 A的阶地。观察到两种不同的表面终端,一种是粗糙的,一种是精细的,通常在单个阶地上共存。精细的结构终止直接反映了整体截断表面的原子结构,从而可以识别出随机的菱形拼贴。为了比较衍射,实空间数据和原子结构模型,分别研究了帕特森函数和表面结构的自相关。这使人们可以理解粗结构终止是由几个原子的亚基组成的,每个亚基统计地排列在由整体十倍平面的原子平铺定义的位点上。

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