On the Approach to the Equilibrium and the Equilibrium Properties of a Glass-Forming Model
arXiv:cond-mat/9712261 · doi:10.1088/0305-4470/31/19/004
Abstract
In this note we apply some theoretical predictions that arise in the mean field framework for a large class of infinite range models to structural glasses and we present a first comparison of these predictions with numerical results.
22 pages, 15 figures
References in corpus (5)
- Phase diagram of glassy systems in an external field
- Glass transition and effective potential in the hypernetted chain approximation
- An investigation of the hidden structure of states in a mean field spin glass model
- A Study of Activated Processes in Soft Sphere Glass
- Numerical indications for the existence of a thermodynamic transition in binary glasses
Cited by in corpus (12)
- Computer Simulations of Supercooled Liquids and Glasses
- Fast Monte Carlo algorithm for supercooled soft spheres
- Thermodynamics of binary mixture glasses
- Replica-exchange molecular dynamics simulation for supercooled liquids
- Overlap fluctuations in glass-forming liquids
- Random Pinning Glass Model
- Numerical study of a short-range p-spin glass model in three dimensions
- A test of non-equilibrium thermodynamics in glassy systems: the soft-sphere case
- Energy Landscape and Overlap Distribution of Binary Lennard-Jones Glasses
- The liquid-glass transition of silica
- Large deviations of glassy effective potentials
- Computational Methods toward Ultrastable Glasses