The temperature dependence of the nonergodicity factor of vitreous GeO(2), f(q)(T), as deduced from elastic and quasielastic neutron scattering experiments, is analyzed. The data are collected in a wide range of temperatures from the glassy phase, up to the glass-transition temperature, and well into the undercooled liquid state. Notwithstanding the investigated system is classified as prototype of strong glass, it is found that the temperature and the q behavior of f(q)(T) follow some of the predictions of mode coupling theory. The experimental data support the hypothesis of the existence of an ergodic to nonergodic transition also in network-forming glassy systems.

Ergodicity breaking in strong and network-forming glassy systems

ZANATTA, Marco;
2009-01-01

Abstract

The temperature dependence of the nonergodicity factor of vitreous GeO(2), f(q)(T), as deduced from elastic and quasielastic neutron scattering experiments, is analyzed. The data are collected in a wide range of temperatures from the glassy phase, up to the glass-transition temperature, and well into the undercooled liquid state. Notwithstanding the investigated system is classified as prototype of strong glass, it is found that the temperature and the q behavior of f(q)(T) follow some of the predictions of mode coupling theory. The experimental data support the hypothesis of the existence of an ergodic to nonergodic transition also in network-forming glassy systems.
2009
glasses
glass transition
elastic neutron scattering
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11562/950367
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