A mean-field model for the electron glass dynamics
arXiv:0712.0895 · doi:10.1103/PhysRevB.77.165207
Abstract
We study a microscopic mean-field model for the dynamics of the electron glass, near a local equilibrium state. Phonon-induced tunneling processes are responsible for generating transitions between localized electronic sites, which eventually lead to the thermalization of the system. We find that the decay of an excited state to a locally stable state is far from being exponential in time, and does not have a characteristic time scale. Working in a mean-field approximation, we write rate equations for the average occupation numbers, and describe the return to the locally stable state using the eigenvalues of a rate matrix, A, describing the linearized time-evolution of the occupation numbers. Analyzing the probability distribution of the eigenvalues of A we find that, under certain physically reasonable assumptions, it takes the form , leading naturally to a logarithmic decay in time. While our derivation of the matrix A is specific for the chosen model, we expect that other glassy systems, with different microscopic characteristics, will be described by random rate matrices belonging to the same universality class of A. Namely, the rate matrix has elements with a very broad distribution, i.e., exponentials of a variable with nearly uniform distribution.
References in corpus (5)
- Mean field theory for the three-dimensional Coulomb glass
- Stress-aging in the electron-glass
- Symmetrical field effect and slow electron relaxation in granular aluminium
- History-dependent relaxation and the energy scale of correlation in the Electron-Glass
- Nonexponential Relaxations in a Two-Dimensional Electron System in Silicon
Cited by in corpus (42)
- On relaxations and aging of various glasses
- Electron Glass Dynamics
- Nonmonotonic Aging and Memory in a Frictional Interface
- Localization, anomalous diffusion and slow relaxations: a random distance matrix approach
- Random transition-rate matrices for the master equation
- TASI lectures on complex structures
- Slow conductance relaxations; Distinguishing the Electron Glass from extrinsic mechanisms
- Emergent percolation length and localization in random elastic networks
- Slow Dynamics of the Electron-Glasses; the Role of Disorder
- Manifestation of ageing in the low temperature conductance of disordered insulators
- Conductance relaxation in the Electron-Glass; Microwaves versus infra-red response
- Intrinsic electron-glassiness in strongly-localized Be films
- Electron Glass in a three-dimensional system
- Memory Effects in the Electron Glass
- Slow Conductance Relaxation in Insulating Granular Al: Evidence for Screening Effects
- Intrinsic electron-glass effects in strongly-localized thallium-oxide films
- Variable range hopping in the Coulomb glass
- Numerical observation of a glassy phase in the three-dimensional Coulomb glass
- Scaling and localization lengths of a topologically disordered system
- Transition to exponential relaxation in weakly-disordered electron-glasses
- 1/f noise and slow relaxations in glasses
- Coulomb Glasses: A Comparison Between Mean Field and Monte Carlo Results
- Optical excitation of Electron-Glasses
- Nonequilibrium transport and Electron-Glass effects in thin GexTe films
- Screening the Coulomb interaction and thermalization of Anderson insulators
- The effect of interactions and disorder on the relaxation of two-level systems in amorphous solids
- Non-equilibrium Relaxation and Aging Scaling of the Coulomb and Bose Glass
- Nonequilibrium relaxation and scaling properties of the two-dimensional Coulomb glass in the aging regime
- Diffusion in sparse networks: linear to semi-linear crossover
- Ballistic Electron Quantum Transport in Presence of a Disordered Background
- Universal frequency-dependent conduction of electron glasses
- Long-range influence of manipulating disordered-insulators locally
- Interaction induced spatial correlations in a Disordered Glass
- Relaxation dynamics of the three-dimensional Coulomb Glass model
- Full counting statistics of random transition-rate matrices
- The effect of screening on the relaxation dynamics in the Coulomb glass
- Low frequency excitations in the Coulomb Glass: numerical analysis using the avalanche method
- Model of the thermoelectric properties of anisotropic organic semiconductors
- Ageing in granular aluminium insulating thin films
- Relaxation of the Random Site Coulomb glass Model in Two Dimensions
- The Effect of Varying Co layer thickness on the Time-Temperature Characteristics of Co/Sb Semimetal Embedded Magnetic Nanoparticles
- Onset of nonequilibrium in a driven Anderson insulator