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Use of periodic approximants in a dynamical LEED study of the quasicrystalline tenfold surface of decagonal Al-Ni-Co

机译:周期近似在十边形Al-Ni-Co准晶体十倍表面动力学LEED研究中的应用

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摘要

The determination of quasicrystal (QC) surface structures is a challenge to current surface structure techniques. Low-energy electron diffraction (LEED) is the primary technique for the determination of periodic surface structures, but application of dynamical LEED to quasicrystals requires the use of many approximations. In this study, two different approaches were used to apply dynamical LEED to the structure of the tenfold surface of decagonal Al_(73)Ni_(10)Co_(17). One method (method 1) involves the use of a quasicrystalline model along with approximations that average over the composition and local geometries. The other method (method 2) uses periodic models that approximate the actual local QC structure (approximants) in more exact, atomistic calculations. Although the results using the two methods were consistent, the results of the approximant analysis (method 2) suggested a different way to apply the approximations in method 1, resulting in a better fit between experimental and calculated beams. Thus, periodic approximant structure models can provide a simpler and more efficient method for the determination of local geometries in QC surfaces, and may also facilitate analyses using quasicrystal models.
机译:准晶体(QC)表面结构的确定是当前表面结构技术的一个挑战。低能电子衍射(LEED)是确定周期性表面结构的主要技术,但将动态LEED应用于准晶体需要使用许多近似方法。在这项研究中,使用两种不同的方法将动态LEED应用于十边形Al_(73)Ni_(10)Co_(17)的十倍表面的结构。一种方法(方法1)涉及使用准晶体模型以及在整个成分和局部几何形状上均值的近似值。另一种方法(方法2)使用周期性模型,在更精确的原子计算中近似实际的局部QC结构(近似值)。尽管使用两种方法得出的结果是一致的,但是近似分析的结果(方法2)提出了应用方法1中近似方法的另一种方法,从而使实验光束与计算光束之间的拟合度更高。因此,周期性近似结构模型可以为确定QC表面的局部几何形状提供一种更简单,更有效的方法,并且还可以简化使用准晶体模型的分析。

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