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首页> 外文期刊>Journal of Applied Crystallography >Collimation problem in small-angle X-ray scattering for anisotropic objects: statement and solution
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Collimation problem in small-angle X-ray scattering for anisotropic objects: statement and solution

机译:各向异性物体小角度X射线散射中的准直问题:陈述和解决方案

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摘要

The problem of removal of collimation distortion due to employing a slit collimation system in small-angle X-ray scattering experiments is considered for anisotropic objects in general and for orientated macromolecules in particular. A mathematical statement of the problem is presented, and two approaches to 'de-smear' the experimental scattering intensity are described. The first method seeks the theoretical scattering intensity as a linear combination of twodimensional basis functions (B splines). The combination coefficients are found using the χ~2 and two-dimensional curvature-minimization criteria. The second approach is based on the iterative Friedman method, which was generalized to be effective for the problem of interest. The described methods are applied to simulated and experimental data, and the results are discussed.
机译:通常,对于各向异性物体,尤其对于定向大分子,考虑了由于在小角度X射线散射实验中采用狭缝准直系统而导致的准直畸变的消除问题。给出了对该问题的数学说明,并描述了两种“消除”实验散射强度的方法。第一种方法将理论散射强度作为二维基函数(B样条)的线性组合来寻找。使用χ〜2和二维曲率最小化准则找到组合系数。第二种方法基于迭代弗里德曼方法,该方法被普遍认为对于关注的问题是有效的。所描述的方法被应用于模拟和实验数据,并讨论了结果。

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