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Models of traps and glass phenomenology

Journal of Physics A Mathematical and General · 1996 · Vol. 29(14) · pp. 3847–3869
Cécile MonthusJean‐Philippe Bouchaud

Abstract

We study various models of independent particles hopping between energy `traps' with a density of energy barriers $\rho(E)$, on a $d$ dimensional lattice or on a fully connected lattice. If $\rho(E)$ decays exponentially, a true dynamical phase transition between a high temperature `liquid' phase and a low temperature `aging' phase occurs. More generally, however, one expects that for a large class of $\rho(E)$, `interrupted' aging effects appear at low enough temperatures, with an ergodic time growing faster than exponentially. The relaxation functions exhibit a characteristic shoulder, which can be fitted as stretched exponentials. A simple way of introducing interactions between the particles leads to a modified model with an effective diffusion constant in energy space, which we discuss in detail.

Material Dynamics and PropertiesTheoretical and Computational PhysicsAdvanced Thermodynamics and Statistical MechanicsPhenomenology (philosophy)Statistical physicsErgodic theoryExponential growthLattice (music)Exponential functionPhase transitionCondensed matter physicsExponential decayRelaxation (psychology)
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References
Scaling concepts for the dynamics of viscous liquids near an ideal glassy state
Physical review. A, General physics · 1989 · 1,001 citations
ANALYSIS OF RECENT MEASUREMENTS OF THE VISCOSITY OF GLASSES
Journal of the American Ceramic Society · 1925 · 4,089 citations
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