首页> 外文期刊>Acta Crystallographica, Section B. Structural Science >Inferring planar disorder in close-packed structures via epsilon-machine spectral reconstruction theory: structure and intrinsic computation in zinc sulfide
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Inferring planar disorder in close-packed structures via epsilon-machine spectral reconstruction theory: structure and intrinsic computation in zinc sulfide

机译:通过ε-机器谱重构理论推断密堆积结构中的平面无序:硫化锌的结构和内在计算

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We apply epsilon-machine spectral reconstruction theory to analyze structure and disorder in four previously published zinc sulfide diffraction spectra and contrast the results with the most common alternative theory, the fault model. In each case we find that the reconstructed epsilon-machine provides a more comprehensive and detailed understanding of the stacking structure, often detecting stacking structures not previously found. Using the epsilon-machines reconstructed for each spectrum, we calculate a number of physical parameters - such as configurational energies, configurational entropies and hexagonality - and several quantities - including statistical complexity and excess entropy - that describe the intrinsic computational properties of the stacking structures.
机译:我们使用ε-机器光谱重建理论来分析先前发布的四个硫化锌衍射光谱的结构和无序度,并将结果与​​最常见的替代理论-断层模型进行对比。在每种情况下,我们都发现重建的ε机对堆叠结构提供了更全面,更详细的了解,经常会检测到以前未发现的堆叠结构。使用针对每个光谱重建的ε机器,我们计算了许多物理参数(例如,构型能量,构型熵和六边形)以及几个数量(包括统计复杂性和过量熵),这些参数描述了堆叠结构的内在计算特性。

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