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Powder diffraction in Bragg–Brentano geometry with straight linear detectors

机译:带有直线检测器的布拉格-布伦塔诺几何形状中的粉末衍射

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摘要

A common way of speeding up powder diffraction measurements is the use of one- or two-dimensional detectors. This usually goes hand in hand with worse resolution and asymmetric peak profiles. In this work the influence of a straight linear detector on the resolution function in the Bragg–Brentano focusing geometry is discussed. Because of the straight nature of most modern detectors geometrical defocusing occurs, which heavily influences the line shape of diffraction lines at low angles. An easy approach to limit the resolution-degrading effects is presented. The presented algorithm selects an adaptive range of channels of the linear detector at low angles, resulting in increased resolution. At higher angles the whole linear detector is used and the data collection remains fast. Using this algorithm a well behaved resolution function is obtained in the full angular range, whereas using the full linear detector the resolution function varies within one pattern, which hinders line-shape and Rietveld analysis.
机译:加快粉末衍射测量速度的常用方法是使用一维或二维检测器。通常这与较差的分辨率和不对称的峰形相伴。在这项工作中,讨论了直线型线性检测器对布拉格-布伦塔诺聚焦几何中分辨率函数的影响。由于大多数现代检测器的直性,会发生几何散焦,这严重影响了低角度衍射线的线形。提出了一种限制分辨率降低效果的简便方法。提出的算法选择低角度的线性检测器通道的自适应范围,从而提高了分辨率。在较大角度下,将使用整个线性检测器,并且数据收集保持快速。使用该算法,可以获得在整个角度范围内性能良好的分辨率函数,而使用全线性检测器,分辨率函数在一个模式内变化,这会阻碍线形和Rietveld分析。

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