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Transition from hydrodynamic to viscoelastic propagation of sound in molten RbBr

F. Demmel, D. Szubrin, W. C. Pilgrim, A. De Francesco, and F. Formisano
Phys. Rev. E 92, 012307 – Published 9 July 2015

Abstract

Inelastic neutron scattering was applied to measure the acoustic-type excitations in the molten alkali halide rubidium bromide. For molten RbBr neutron scattering is mainly sensitive to the number density fluctuation spectrum and is not influenced by charge fluctuations. Utilizing a dedicated Brillouin scattering spectrometer, we focused on the small-wave-vector range. From inelastic excitations in the spectra a dispersion relation was obtained, which shows a large positive dispersion effect. This frequency enhancement is related to a viscoelastic response of the liquid at high frequencies. Towards small wave vectors we identify the transition to hydrodynamic behavior. This observation is supported by a transition of the sound velocity from a viscoelastic enhanced value to the adiabatic speed of sound for the acoustic-type excitations. Furthermore, the spectrum transforms into a line shape compatible with a prediction from hydrodynamics.

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  • Received 10 April 2015

DOI:https://doi.org/10.1103/PhysRevE.92.012307

This article is available under the terms of the Creative Commons Attribution 3.0 License. Further distribution of this work must maintain attribution to the author(s) and the published article’s title, journal citation, and DOI.

Published by the American Physical Society

Authors & Affiliations

F. Demmel1,*, D. Szubrin2, W. C. Pilgrim2, A. De Francesco3, and F. Formisano3

  • 1ISIS Facility, Rutherford Appleton Laboratory, Didcot OX11 0QX, United Kingdom
  • 2Fachbereich Chemie, Philipps-Universität Marburg, 35032 Marburg, Germany
  • 3CNR-IOM c/o OGG Institut Laue-Langevin, 38042 Grenoble, France

  • *franz.demmel@stfc.ac.uk

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Vol. 92, Iss. 1 — July 2015

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