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Dynamics from elastic neutron-scattering via direct measurement of the running time-integral of the van Hove distribution function
Published 30 Mar 2019 in physics.ins-det, cond-mat.soft, physics.bio-ph, physics.chem-ph, and physics.data-an | (1904.01680v3)
Abstract: We present a new neutron-scattering approach to access the van Hove distribution function directly in the time domain, I(t), which reflects the system dynamics. Currently, I(t) is essentially determined from neutron energy-exchange. Our method consists of the straightforward measurement of the running time-integral of I(t), by computing the portion of scattered neutrons corresponding to species at rest within a time t, (conceptually elastic scattering). Previous attempts failed to recognise this connection. Starting from a theoretical standpoint, a practical realisation is assessed via numerical methods and an instrument simulation.
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