The presence of a fast-sound mode in the microscopic dynamics of the rare-gas mixture He–Ne, predicted by theoretical studies and molecular-dynamics simulations, was demonstrated by an inelastic neutron scattering experiment. In order to study the transition between the fast and the normal acoustic modes in the hydrodynamic regime, k values lower by about one order of magnitude than in the usual experiments have to be probed. We describe here the results of the first neutron Brillouin scattering experiment performed with this purpose on the same system already investigated at larger k. The results of both experiments, together with those of a new molecular-dynamics simulation, provide a complete and consistent description, still missing so far, of the onset of fast-sound propagation in a binary mixture.

Transition from hydrodynamic to fast sound in a He-Ne mixture: A neutron Brillouin scattering experiment / U. BAFILE; E. GUARINI; F. BAROCCHI; M. SAMPOLI. - In: APPLIED PHYSICS. A, MATERIALS SCIENCE & PROCESSING. - ISSN 0947-8396. - STAMPA. - 74:(2002), pp. S427-S429. [10.1007/s003390201644]

Transition from hydrodynamic to fast sound in a He-Ne mixture: A neutron Brillouin scattering experiment

GUARINI GRISALDI TAJA O DEL TAJA, ELEONORA;BAROCCHI, FABRIZIO;SAMPOLI, MARCO
2002

Abstract

The presence of a fast-sound mode in the microscopic dynamics of the rare-gas mixture He–Ne, predicted by theoretical studies and molecular-dynamics simulations, was demonstrated by an inelastic neutron scattering experiment. In order to study the transition between the fast and the normal acoustic modes in the hydrodynamic regime, k values lower by about one order of magnitude than in the usual experiments have to be probed. We describe here the results of the first neutron Brillouin scattering experiment performed with this purpose on the same system already investigated at larger k. The results of both experiments, together with those of a new molecular-dynamics simulation, provide a complete and consistent description, still missing so far, of the onset of fast-sound propagation in a binary mixture.
2002
74
S427
S429
U. BAFILE; E. GUARINI; F. BAROCCHI; M. SAMPOLI
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/256311
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