Metastable states in glassy systems
arXiv:cond-mat/0005499 · doi:10.1103/PhysRevE.64.016101
Abstract
Truly stable metastable states are an artifact of the mean-field approximation or the zero temperature limit. If such appealing concepts in glass theory as configurational entropy are to have a meaning beyond these approximations, one needs to cast them in a form involving states with finite lifetimes. Starting from elementary examples and using results of Gaveau and Schulman, we propose a simple expression for the configurational entropy and revisit the question of taking flat averages over metastable states. The construction is applicable to finite dimensional systems, and we explicitly show that for simple mean-field glass models it recovers, justifies and generalises the known results. The calculation emphasises the appearance of new dynamical order parameters.
4 fig., 20 pages, revtex; added references and minor changes
References in corpus (6)
- Inherent Structure Entropy of Supercooled Liquids
- The thermodynamical liquid-glass transition in a Lennard-Jones binary mixture
- Quasi-equilibrium interpretation of aging dynamics
- From inherent structures to pure states: some simple remarks and examples
- Dynamical TAP approach to mean field glassy systems
- Instantons in the Langevin dynamics: an application to spin glasses
Cited by in corpus (73)
- Theoretical perspective on the glass transition and amorphous materials
- Supercooled Liquids for Pedestrians
- Glassy dynamics of kinetically constrained models
- Violation of the fluctuation-dissipation theorem in glassy systems: basic notions and the numerical evidence
- The frustration-based approach of supercooled liquids and the glass transition: a review and critical assessment
- Strong disorder RG approach of random systems
- Glass and Jamming Transitions: From Exact Results to Finite-Dimensional Descriptions
- The effective temperature
- Space-time Thermodynamics of the Glass Transition
- The glass transition of dense fluids of hard and compressible spheres
- Energy Barriers and Activated Dynamics in a Supercooled Lennard-Jones Liquid
- Temperature in and out of equilibrium: a review of concepts, tools and attempts
- Ergodicity and large deviations in physical systems with stochastic dynamics
- Perspective: Configurational entropy of glass-forming liquids
- Finite-temperature critical point of a glass transition
- Quantum mechanical and information theoretic view on classical glass transitions
- Aging in the random energy model
- Multiple phases in stochastic dynamics: geometry and probabilities
- Collective power: Minimal model for thermodynamics of nonequilibrium phase transitions
- A novel approach to numerical measurements of the configurational entropy in supercooled liquids
- Preparation and relaxation of very stable glassy states of a simulated liquid
- Interlacing Relaxation and First-Passage Phenomena in Reversible Discrete and Continuous Space Markovian Dynamics
- Can the glass transition be explained without a growing static length scale?
- Metastable states and space-time phase transitions in a spin-glass model
- Duality Between Relaxation and First Passage in Reversible Markov Dynamics: Rugged Energy Landscapes Disentangled
- Localization of thermal packets and metastable states in Sinai model
- Field theory for amorphous solids
- Does the configurational entropy of polydisperse particles exist?
- Metastable States, Relaxation Times and Free-energy Barriers in Finite Dimensional Glassy Systems
- Metastability and low lying spectra in reversible Markov chains
- Metastability in zero-temperature dynamics: Statistics of attractors
- Metastable states, transitions, basins and borders at finite temperatures
- Metastability and small eigenvalues in Markov chains
- Competitive nucleation in reversible Probabilistic Cellular Automata
- Classical Glasses, Black Holes, and Strange Quantum Liquids
- Dynamical phase transitions in supercooled liquids: interpreting measurements of dynamical activity
- What is the temperature of a granular medium?
- Dynamical Instantons and Activated Processes in Mean-Field Glass Models
- Metastability associated with many-body explosion of eigenmode expansion coefficients
- "Glassy" Relaxation in Catalytic Reaction Networks
- Competitive nucleation and the Ostwald rule in a generalized Potts model with multiple metastable phases
- Methods and Conversations in (Post)Modern Thermodynamics
- Dimensional Reduction of Markov State Models from Renormalization Group Theory
- Spectral Form Factor of a Quantum Spin Glass
- Edwards field theory for glasses and granular matter
- Random walks and polymers in the presence of quenched disorder
- Bounding flows for spherical spin glass dynamics
- Duality symmetries and effective dynamics in disordered hopping models
- Glassy states in lattice models with many coexisting crystalline phases
- Effects of random pinning on the potential energy landscape of a supercooled liquid
- Glassy dynamics on networks: local spectra and return probabilities
- Off-equilibrium confined dynamics in a glassy system with level-crossing states
- Supersymmetric Langevin equation to explore free energy landscapes
- The liquid-glass transition of silica
- Nonequilibrium fluctuations in small systems: From physics to biology
- The out of equilibrium dynamics of the Sherrington-Kirkpatrick model
- Dynamical phase coexistence in the Fredrickson-Andersen model
- Freezing of Triangulations
- Fluctuation-dissipation relations and energy landscape in an out-of-equilibrium strong glass-forming liquid
- Inference in conditioned dynamics through causality restoration
- Universality of REM-like aging in mean field spin glasses
- Metastability in Markov processes
- Quasi-equilibrium during aging of the 2D Edwards-Anderson model
- Numerical method for computing the free energy of glasses
- Counting metastable states in a kinetically constrained model using a patch repetition analysis
- How glasses explore configuration space
- Markov dualities via the spectral decompositions of the two Markov generators in their bi-orthogonal basis of right and left eigenvectors
- Rényi complexity in mean-field disordered systems
- Universal trade-off between irreversibility and intrinsic timescale in thermal relaxation with applications to thermodynamic inference
- Recent theories of glasses as out of equilibrium systems
- Following the evolution of metastable glassy states under external perturbations: compression and shear-strain
- Ma-Dasgupta renormalization studies of various disordered systems
- Metastability in the diluted parallel Ising model