首页> 外文期刊>Journal of Applied Crystallography >Theory of geometrical broadening of diffraction peaks from twisted lamellar crystals for interpretation of X-ray microbeam and selected-area electron diffraction experiments
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Theory of geometrical broadening of diffraction peaks from twisted lamellar crystals for interpretation of X-ray microbeam and selected-area electron diffraction experiments

机译:扭曲层状晶体衍射峰的几何展宽理论,用于解释X射线微束和选择区域电子衍射实验

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摘要

A simple theory of angular broadening of diffraction peaks is presented for the X-ray and electron diffraction from twisted crystalline lamellae. The diffraction peak position, width and asymmetry are computed in the limit of a small natural reflection width. The peak broadening depends on the orientation of the corresponding reciprocal-space vector with respect to the helicoid axis and the normal to the lamellar basal plane. It is found that the equatorial peaks, which are close to the normal direction to the lamellar basal plane, are characterized by the highest azimuthal width. The theory also describes the azimuthal drift of the non-equatorial reflections on a flat two-dimensional detector as the incident beam scans along the main helicoid axis. The proposed approach can be useful for interpretation of microbeam diffractograms measured on banded polymer spherulites. It can be easily generalized to describe diffraction from crystals of any arbitrary shape obtained by deformation of a flat lamella, under the condition that upon the deformation all the in-plane angles and distances are preserved in the linear approximation.
机译:提出了一种简单的衍射峰角展宽理论,用于从扭曲晶体薄片进行的X射线和电子衍射。衍射峰的位置,宽度和不对称性是在较小的自然反射宽度的范围内计算的。峰展宽取决于相应的倒数空间向量相对于螺旋轴和片状基面法线的方向。发现,接近于层状基面法线方向的赤道峰的特征在于最大方位角宽度。该理论还描述了当入射光束沿主螺旋线轴扫描时,在平面二维检测器上非赤道反射的方位角漂移。所提出的方法可用于解释在带状聚合物球晶上测得的微束衍射图。在平坦变形后,所有平面内的角度和距离都保持线性近似的条件下,可以很容易地归纳为描述通过平坦薄片变形获得的任意形状的晶体的衍射。

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