Acta Crystallographica Section A Foundations and Advances · 2021 · 19 citations · 11 references
X-ray CrystallographyPowder Diffraction DataEngineeringMicroscopyElectron DiffractionOptical PropertiesInstrumentationMaterials SciencePhysicsDiffractionSynchrotron RadiationCrystallographyOptical Particle SizingInstrumental BroadeningNatural SciencesSpectroscopyX-ray DiffractionApplied PhysicsImage ResolutionPowder DiffractionDiffractive Optic
In a powder diffraction experiment the resolution function defines the instrumental contribution to the peak widths as a function of the Bragg angle. The Caglioti formula is frequently applied to model the instrumental broadening and used in structural refinement. The parameters in the Caglioti formula are linked to physically meaningful parameters for most diffraction geometries. However, this link is lost for the now very popular powder diffraction geometry using large 2D area detectors. Here we suggest a new physical model for the instrumental broadening specifically developed for powder diffraction data measured with large 2D area detectors. The model is verified using data from two synchrotron diffraction beamlines with the Pilatus2M and MAR345 detectors. Finally, a functional form is proposed to replace the Caglioti formula for this geometry in the Rietveld method and profile refinements.
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The fast azimuthal integration Python library:<i>pyFAI</i>
Giannis Ashiotis, Aurore Deschildre, Zubair Nawaz et al. · Journal of Applied Crystallography · 2015 · 835 citations · Full text
A new multipurpose diffractometer PILATUS@SNBL
Vadim Dyadkin, Philip Pattison, Vladimir Dmitriev et al. · Journal of Synchrotron Radiation · 2016 · 348 citations
New tools for calibrating diffraction setups
Jérôme Kieffer, Valentin Valls, Nils Blanc et al. · Journal of Synchrotron Radiation · 2020 · 240 citations · Full text
Pyfai Suite, New Tools, Engineering +13