Algorithms for solving atomic structures of nanodimensional clusters in single crystals based on X-ray and neutron diffuse scattering data

被引:0
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作者
N. M. Andrushevskii
B. M. Shchedrin
V. I. Simonov
机构
[1] Moscow State University,Faculty of Computational Mathematics and Cybernetics
[2] Russian Academy of Sciences,Shubnikov Institute of Crystallography
来源
Crystallography Reports | 2004年 / 49卷
关键词
Fourier; Fourier Transformation; Atomic Structure; Compact Group; Diffuse Scattering;
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摘要
New algorithms for solving the atomic structure of equivalent nanodimensional clusters of the same orientations randomly distributed over the initial single crystal (crystal matrix) have been suggested. A cluster is a compact group of substitutional, interstitial or other atoms displaced from their positions in the crystal matrix. The structure is solved based on X-ray or neutron diffuse scattering data obtained from such objects. The use of the mathematical apparatus of Fourier transformations of finite functions showed that the appropriate sampling of the intensities of continuous diffuse scattering allows one to synthesize multiperiodic difference Patterson functions that reveal the systems of the interatomic vectors of an individual cluster. The suggested algorithms are tested on a model one-dimensional structure.
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页码:863 / 870
页数:7
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