Publication | Open Access
Diffraction-geometry refinement in the<i>DIALS</i>framework
187
Citations
34
References
2016
Year
Crystal StructureEngineeringGeometryDiffraction-geometry RefinementComputer-aided DesignRapid Data CollectionNumerical SimulationReflectionComputational ElectromagneticsComputational GeometryCrystal FormationGeometric ModelingPhysicsCrystal MaterialDiffractionGlobal Refinement TechniqueCrystallographyDiffraction GeometryCrystal Structure DesignNatural SciencesApplied PhysicsDiffractive OpticMultiscale Modeling
Rapid data collection and modern computing resources provide the opportunity to revisit the task of optimizing the model of diffraction geometry prior to integration. A comprehensive description is given of new software that builds upon established methods by performing a single global refinement procedure, utilizing a smoothly varying model of the crystal lattice where appropriate. This global refinement technique extends to multiple data sets, providing useful constraints to handle the problem of correlated parameters, particularly for small wedges of data. Examples of advanced uses of the software are given and the design is explained in detail, with particular emphasis on the flexibility and extensibility it entails.
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