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Correction and integration of solid-angle data from the azimuthally resolving 2D detector at ID06-LVP, ESRF

The unique diffraction geometry of ESRF beamline ID06-LVP offers continuous static 2D or azimuthally resolving data collections over all accessible solid angles available to the tooling geometry. The system is built around a rotating custom-built Pilatus3 CdTe 900k-W detector from Dectris, in a conf...

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Autores principales: Crichton, Wilson A., Kieffer, Jérôme, Wattecamps, Pierre, Valls, Valentin, Berruyer, Gilles, Ruat, Marie, Favre-Nicolin, Vincent
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10624032/
https://www.ncbi.nlm.nih.gov/pubmed/37850561
http://dx.doi.org/10.1107/S1600577523008020
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author Crichton, Wilson A.
Kieffer, Jérôme
Wattecamps, Pierre
Valls, Valentin
Berruyer, Gilles
Ruat, Marie
Favre-Nicolin, Vincent
author_facet Crichton, Wilson A.
Kieffer, Jérôme
Wattecamps, Pierre
Valls, Valentin
Berruyer, Gilles
Ruat, Marie
Favre-Nicolin, Vincent
author_sort Crichton, Wilson A.
collection PubMed
description The unique diffraction geometry of ESRF beamline ID06-LVP offers continuous static 2D or azimuthally resolving data collections over all accessible solid angles available to the tooling geometry. The system is built around a rotating custom-built Pilatus3 CdTe 900k-W detector from Dectris, in a configuration equivalent to three butted 300k devices. As a non-standard geometry, here the method of alignment, correction and subsequent integration for any data collected over all solid angles accessible, or over any azimuthal range contained therein, are provided and illustrated by parameterizing and extending existing pyFAI routines. At 1° integrated intervals, and typical distances (2.0 m), the system covers an area of near 2.5 m(2) (100 Mpx square equivalent), to 0.65 Å resolution, at 53 keV from a total dataset of some 312 Mpx. Standard FWHMs of SRM660a LaB(6) vary from 0.005° to 0.01°, depending on beam size, energy and sample dimensions, and are sampled at an elevated rate. The azimuthal range per static frame ranges from <20° to ∼1° over the full range of the detector surface. A full 2θ–intensity data collection at static azimuth takes 1–3 s typically, and can be reduced to ms(−1) rates for measurements requiring time-rate determination. A full solid-angle collection can be completed in a minute. Sample detector distances are accessible from 1.6 m to 4.0 m.
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spelling pubmed-106240322023-11-04 Correction and integration of solid-angle data from the azimuthally resolving 2D detector at ID06-LVP, ESRF Crichton, Wilson A. Kieffer, Jérôme Wattecamps, Pierre Valls, Valentin Berruyer, Gilles Ruat, Marie Favre-Nicolin, Vincent J Synchrotron Radiat Beamlines The unique diffraction geometry of ESRF beamline ID06-LVP offers continuous static 2D or azimuthally resolving data collections over all accessible solid angles available to the tooling geometry. The system is built around a rotating custom-built Pilatus3 CdTe 900k-W detector from Dectris, in a configuration equivalent to three butted 300k devices. As a non-standard geometry, here the method of alignment, correction and subsequent integration for any data collected over all solid angles accessible, or over any azimuthal range contained therein, are provided and illustrated by parameterizing and extending existing pyFAI routines. At 1° integrated intervals, and typical distances (2.0 m), the system covers an area of near 2.5 m(2) (100 Mpx square equivalent), to 0.65 Å resolution, at 53 keV from a total dataset of some 312 Mpx. Standard FWHMs of SRM660a LaB(6) vary from 0.005° to 0.01°, depending on beam size, energy and sample dimensions, and are sampled at an elevated rate. The azimuthal range per static frame ranges from <20° to ∼1° over the full range of the detector surface. A full 2θ–intensity data collection at static azimuth takes 1–3 s typically, and can be reduced to ms(−1) rates for measurements requiring time-rate determination. A full solid-angle collection can be completed in a minute. Sample detector distances are accessible from 1.6 m to 4.0 m. International Union of Crystallography 2023-10-17 /pmc/articles/PMC10624032/ /pubmed/37850561 http://dx.doi.org/10.1107/S1600577523008020 Text en © Wilson A. Crichton et al. 2023 https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution (CC-BY) Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.
spellingShingle Beamlines
Crichton, Wilson A.
Kieffer, Jérôme
Wattecamps, Pierre
Valls, Valentin
Berruyer, Gilles
Ruat, Marie
Favre-Nicolin, Vincent
Correction and integration of solid-angle data from the azimuthally resolving 2D detector at ID06-LVP, ESRF
title Correction and integration of solid-angle data from the azimuthally resolving 2D detector at ID06-LVP, ESRF
title_full Correction and integration of solid-angle data from the azimuthally resolving 2D detector at ID06-LVP, ESRF
title_fullStr Correction and integration of solid-angle data from the azimuthally resolving 2D detector at ID06-LVP, ESRF
title_full_unstemmed Correction and integration of solid-angle data from the azimuthally resolving 2D detector at ID06-LVP, ESRF
title_short Correction and integration of solid-angle data from the azimuthally resolving 2D detector at ID06-LVP, ESRF
title_sort correction and integration of solid-angle data from the azimuthally resolving 2d detector at id06-lvp, esrf
topic Beamlines
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10624032/
https://www.ncbi.nlm.nih.gov/pubmed/37850561
http://dx.doi.org/10.1107/S1600577523008020
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