Two-dimensional detector software: From real detector to idealised image or two-theta scan

被引:4429
作者
Hammersley, AP
Svensson, SO
Hanfland, M
Fitch, AN
Hausermann, D
机构
关键词
data analysis; powder diffraction; detector calibration; detector distortions; area detectors; distortion correction;
D O I
10.1080/08957959608201408
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Detector systems introduce distortions into acquired data. To obtain accurate angle and intensity information, it is necessary to calibrate, and apply corrections. Intensify non-linearity, spatial distortion, and non-uniformity of intensity response, are the primary considerations. It is better to account for the distortions within scientific analysis software, but often it is more practical to correct the distortions to produce 'idealised' data. Calibration methods and software have been developed for single crystal diffraction experiments, using both approaches. For powder diffraction experiments;the additional task of converting a two-dimensional image to a one-dimensional spectrum is used to allow Rietveld analysis. This task may be combined with distortion correction to produce intensify information and error estimates. High-pressure experiments can introduce additional complications and place new demands on software. Flexibility is needed to be able to integrate different angular regions separately, and to produce profiles as a function of angle of azimuth. Methods to cope with awkward data are described, and examples of the techniques applied to data from high pressure experiments are presented.
引用
收藏
页码:235 / 248
页数:14
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