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- W2317222793 abstract "Here we report on a mathematical description for the neutron dark-field image (DFI) contrast based on the influence of the thickness-dependent beam broadening caused by scattering interactions and multiple refraction in the sample. We conduct radiography experiments to verify that the DFI signal exponentially decays as a function of thickness for both magnetic and nonmagnetic materials. Here we introduce a material-dependent parameter, the so-called linear diffusion coefficient $ensuremath{Omega}$. This allows us to perform a quantitative DFI-computed tomography. Additionally, we conduct correlative small-angle neutron-scattering experiments and validate the mathematical assumption that the angular broadening of the direct beam is proportional to the square root of the number of discrete layers." @default.
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- W2317222793 date "2013-09-04" @default.
- W2317222793 modified "2023-10-18" @default.
- W2317222793 title "Quantification of the neutron dark-field imaging signal in grating interferometry" @default.
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- W2317222793 doi "https://doi.org/10.1103/physrevb.88.125104" @default.
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