All neutron interactions contribute to the background, both inside and around the sample. Cryomagnets and pressure cells, for example, produce undesired scattering. Modelling them completely also means taking into account the inelastic scattering contribution and the material microstructure too.
Dr. Victor Laliena from ICMA located in Zaragoza, Spain, has developed a code for calculating the interactions which depend on the microstructure of materials: coherent elastic scattering, incoherent inelastic scattering and diffuse reflection. Three usual types of microstructures can be simulated: uniformly random polycrystals (powder), mosaic single crystals, and two-dimensional disordered structures. The coding has now been implemented in the widely used McStas simulation software. Being compatible with the Union package, multiple scattering simulations can even be performed on complex geometries.
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