Glassy transition and aging in a model without disorder.
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Summary
It is shown that complex phenomena such as aging and ergodicity breaking are present at low temperature, similarly to what is found in long range spin glasses, in a generalization of mode coupling theory of the structural glass transition to off-equilibrium situations.
- Type
- article
- Published
- 1994-08-24
- Cited by
- 59
- References
- 11
- Access
- Open access
- OpenAlex
- https://openalex.org/W2038152489
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:15043362
Keywords
Ergodicity, Spin glass, Coupling (piping), Statistical physics, Condensed matter physics
References
Cited by
- The p-spin spherical spin glass model
- Glasses and replicas
- Relaxational processes and entropic traps in the Backgammon model
- A mean-field hard-spheres model of glass
- LETTER TO THE EDITOR: Dynamics within metastable states in a mean-field spin glass
- Self-consistent screening approximation for critical dynamics
- Kinetically driven glassy transition in an exactly solvable toy model with a reversible mode coupling mechanism and trivial statics
- Aging and Effective Temperatures in the Low Temperature Mode-Coupling Equations*)
- A tentative replica study of the glass transition
- Long time behaviour of the solution to non-linear Kraichnan equations
- Coherent spin oscillations in bulk GaAs at room temperature
- Mean-field glass transition in a model liquid.
- Supersymmetric field theory of a nonequilibrium stochastic system as applied to disordered heteropolymers
- Heterogeneities and local fluctuations in glassy systems
- Distribution of attraction basins in a family of simple glasses
- How do glassy domains grow?
- From Spin Glasses to Glasses
- Random-field p-spin-glass model on regular random graphs
- EFFECTIVE POTENTIAL IN GLASSY SYSTEMS : THEORY AND SIMULATIONS
- DYNAMICAL SOLUTION OF A MODEL WITHOUT ENERGY BARRIERS
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