首页> 外文期刊>Journal of Applied Crystallography >THE PHI EXTENT OF THE REFLECTION RANGE IN THE OSCILLATION METHOD ACCORDING TO THE MOSAICITY-CAP MODEL
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THE PHI EXTENT OF THE REFLECTION RANGE IN THE OSCILLATION METHOD ACCORDING TO THE MOSAICITY-CAP MODEL

机译:根据Moasisity-Cap模型的振荡方法中反射范围的PHI范围

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New expressions for the cp extent of the reflection range in the oscillation method are derived by the combination of analytical geometry with the reciprocal-space and Ewald-sphere formalisms. The effect of crystal mosaicity is described by the extension of a reciprocal-lattice point into a cap. The effective cylindrical coordinates of the reciprocal-lattice point, corresponding to the cap points lying in the plane in which the cap has its maximum cp extent, are introduced. The effect of beam divergence and wavelength spread are accounted for by consideration of a nest of the Ewald spheres. The expressions for intersection of the mosaicity cap with the nest of the Ewald spheres are used to check whether a reflection is fully or partially registered during the crystal oscillations. The presented formulas have been incorporated into software for processing area-detector data. [References: 10]
机译:通过将解析几何与倒数空间和Ewald-sphere形式主义相结合,得出了振荡方法中反射范围cp范围的新表达式。晶体镶嵌性的影响通过将倒数晶格点扩展到顶盖中来描述。引入了倒数晶格点的有效圆柱坐标,该坐标对应于位于顶盖具有最大cp范围的平面中的顶盖点。光束发散和波长扩展的影响是通过考虑埃瓦尔德球体的嵌套来解决的。镶嵌顶盖与Ewald球体的嵌套相交的表达式用于检查晶体振荡过程中反射是完全记录还是部分记录。提出的公式已合并到用于处理区域检测器数据的软件中。 [参考:10]

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