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晶体准晶晶格中的五重对称性。

Five-fold symmetry in crystalline quasicrystal lattices.

作者信息

Caspar D L, Fontano E

机构信息

Institute of Molecular Biophysics, Florida State University, Tallahassee, 32306-3015, USA.

出版信息

Proc Natl Acad Sci U S A. 1996 Dec 10;93(25):14271-8. doi: 10.1073/pnas.93.25.14271.

Abstract

To demonstrate that crystallographic methods can be applied to index and interpret diffraction patterns from well-ordered quasicrystals that display non-crystallographic 5-fold symmetry, we have characterized the properties of a series of periodic two-dimensional lattices built from pentagons, called Fibonacci pentilings, which resemble aperiodic Penrose tilings. The computed diffraction patterns from periodic pentilings with moderate size unit cells show decagonal symmetry and are virtually indistinguishable from that of the infinite aperiodic pentiling. We identify the vertices and centers of the pentagons forming the pentiling with the positions of transition metal atoms projected on the plane perpendicular to the decagonal axis of quasicrystals whose structure is related to crystalline eta phase alloys. The characteristic length scale of the pentiling lattices, evident from the Patterson (autocorrelation) function, is approximately tau 2 times the pentagon edge length, where tau is the golden ratio. Within this distance there are a finite number of local atomic motifs whose structure can be crystallographically refined against the experimentally measured diffraction data.

摘要

为了证明晶体学方法可用于对显示非晶体学五重对称性的有序准晶体的衍射图案进行索引和解释,我们表征了一系列由五边形构成的周期性二维晶格的特性,这些晶格称为斐波那契五边形拼砌,类似于非周期性的彭罗斯拼砌。由具有中等尺寸晶胞的周期性五边形拼砌计算得到的衍射图案显示出十边形对称性,并且与无限非周期性五边形拼砌的衍射图案几乎无法区分。我们将构成五边形拼砌的五边形的顶点和中心与过渡金属原子的位置进行了关联,这些过渡金属原子投影在与准晶体十边形轴垂直的平面上,该准晶体的结构与晶体η相合金相关。从帕特森(自相关)函数中明显看出,五边形拼砌晶格的特征长度尺度约为五边形边长的τ²倍,其中τ是黄金比例。在这个距离内,存在有限数量的局部原子图案,其结构可以根据实验测量的衍射数据进行晶体学精修。

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