Statistical Physics of Structural Glasses
arXiv:cond-mat/0002128 · doi:10.1088/0953-8984/12/29/336
Abstract
This paper gives an introduction and brief overview of some of our recent work on the equilibrium thermodynamics of glasses. We have focused onto first principle computations in simple fragile glasses, starting from the two body interatomic potential. A replica formulation translates this problem into that of a gas of interacting molecules, each molecule being built of atoms, and having a gyration radius (related to the cage size) which vanishes at zero temperature. We use a small cage expansion, valid at low temperatures, which allows to compute the cage size, the specific heat (which follows the Dulong and Petit law), and the configurational entropy. The no-replica interpretation of the computations is also briefly described. The results, particularly those concerning the Kauzmann tempaerature and the configurational entropy, are compared to recent numerical simulations.
21 pages, 6 figures, to appear in the proceedings of the Trieste workshop on "Unifying Concepts in Glass Physics"
References in corpus (5)
- Inherent Structure Entropy of Supercooled Liquids
- The thermodynamical liquid-glass transition in a Lennard-Jones binary mixture
- The response of glassy systems to random perturbations: A bridge between equilibrium and off-equilibrium
- Lennard-Jones binary mixture: a thermodynamical approach to glass transition
- Thermodynamics of supercooled liquids in the inherent structure formalism: a case study
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