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Correcting spatial distortions and nonuniform response in area detectors
Author(s) -
Stanton M.,
Phillips W. C.,
Li Y.,
Kalata K.
Publication year - 1992
Publication title -
journal of applied crystallography
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.429
H-Index - 162
ISSN - 1600-5767
DOI - 10.1107/s0021889892004035
Subject(s) - optics , detector , pixel , distortion (music) , lookup table , interpolation (computer graphics) , intensity (physics) , physics , sensitivity (control systems) , image resolution , computer science , computer vision , image (mathematics) , optoelectronics , electronic engineering , amplifier , cmos , programming language , engineering
Software and hardware methods have been developed to correct images for spatial and intensity distortions produced by optical and electro‐optical components in X‐ray area detectors. Spatial distortions are divided into two types: gross distortions produced by the inherent properties of the detector components and local distortions formed by irregularities in the components. Intensity distortions are separated into three types: those caused by background nonuniformity; those resulting from pixel‐dependent nonuniform intensity response; and those resulting from time‐dependent variations in background and incident beam intensity. From background, flat‐field, reference and mask images, `forward' and `reverse' interpolation tables are generated to correct for spatial distortions and a lookup table is generated to correct for nonuniform sensitivity. The routines have been used successfully on four different area detectors to correct entire images or to correct intensities of individual Bragg peaks. The spatial‐distortion correction is good to within 0.1 pixels and the nonuniformity correction to ≲ 2%.

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