Coherence approach in neutron, x-ray, and neutron spin-echo reflectometry

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Abstract

Based on the application of coherence theory to neutron scattering a description is given of the propagation of neutrons or x-rays through a reflectometer. Important coherence effects at the sample position are discussed. Further, an outline is given how to determine the measured count rate in a detector on the basis of this method including neutron-polarization effects. It is shown in what way the Born approximation and distorted-wave Born approximation can be used within this theory. An outline is given of the phase-object approximation, describing the specular and diffuse scattering from a surface with large surface structure, extending over the existing capabilities of the distorted-wave Born approximation. The incorporation of neutron-polarization effects enables the detailed discussion of neutron spin-echo coding techniques applied to reflectometry. © 2010 The American Physical Society.

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De Haan, V. O., Plomp, J., Rekveldt, M. T., Van Well, A. A., Dalgliesh, R. M., Langridge, S., … Hendrikx, R. (2010). Coherence approach in neutron, x-ray, and neutron spin-echo reflectometry. Physical Review B - Condensed Matter and Materials Physics, 81(9). https://doi.org/10.1103/PhysRevB.81.094112

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