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Recent tests of the mode-coupling theory for glassy dynamics
Journal of Physics Condensed Matter · 1999 · Vol. 11(10A) · pp. A1–A45
W. Götze✉(Technical University of Munich)
Abstract
An overview is given of recent tests of the mode-coupling theory for the evolution of structural relaxation in glass-forming liquids. Emphasis is put on comparisons between the leading-order asymptotic formulae derived for the dynamics near glass transition singularities and the results of neutron scattering, depolarized light scattering, impulsive stimulated light scattering and dielectric-loss spectroscopy for conventional liquids. The tests based on photon-correlation spectroscopy results for the glassy dynamics of colloids and the findings of molecular dynamics simulations for model systems are also considered.
Material Dynamics and PropertiesGlass properties and applicationsThermodynamic properties of mixturesRelaxation (psychology)Neutron scatteringDynamic light scatteringMode couplingCoupling (piping)Glass transitionScatteringLight scatteringDynamics (music)Spectroscopy
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References
Testing mode-coupling theory for a supercooled binary Lennard-Jones mixture I: The van Hove correlation function
Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics · 1995 · 1,286 citations
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