Heterogeneous dynamics of the three dimensional Coulomb glass out of equilibrium
arXiv:cond-mat/0407734 · doi:10.1103/PhysRevB.71.024206
Abstract
The non-equilibrium relaxational properties of a three dimensional Coulomb glass model are investigated by kinetic Monte Carlo simulations. Our results suggest a transition from stationary to non-stationary dynamics at the equilibrium glass transition temperature of the system. Below the transition the dynamic correlation functions loose time translation invariance and electron diffusion is anomalous. Two groups of carriers can be identified at each time scale, electrons whose motion is diffusive within a selected time window and electrons that during the same time interval remain confined in small regions in space. During the relaxation that follows a temperature quench an exchange of electrons between these two groups takes place and the non-equilibrium excess of diffusive electrons initially present decreases logarithmically with time as the system relaxes. This bimodal dynamical heterogeneity persists at higher temperatures when time translation invariance is restored and electron diffusion is normal. The occupancy of the two dynamical modes is then stationary and its temperature dependence reflects a crossover between a low-temperature regime with a high concentration of electrons forming fluctuating dipoles and a high-temperature regime in which the concentration of diffusive electrons is high.
10 pages, 9 figures
References in corpus (1)
Cited by in corpus (17)
- Mean field theory for the three-dimensional Coulomb glass
- Relaxation dynamics in quantum electron-glasses
- Density of States and Critical Behavior of the Coulomb Glass
- Slow conductance relaxations; Distinguishing the Electron Glass from extrinsic mechanisms
- A quench-cooling procedure compared with the gate-protocol for aging experiments in the Electron-Glass
- Slow Dynamics of the Electron-Glasses; the Role of Disorder
- Manifestation of ageing in the low temperature conductance of disordered insulators
- Slow Conductance Relaxation in Insulating Granular Al: Evidence for Screening Effects
- Slow Relaxation and Equilibrium Dynamics in a 2 D Coulomb Glass: Demonstration of Stretched Exponential Energy Correlations
- Nonlinear conductivity of two-dimensional Coulomb glasses
- Charge ordering in the three-dimensional Coulomb glass at finite temperatures and low disorders
- Nonequilibrium relaxation and scaling properties of the two-dimensional Coulomb glass in the aging regime
- Relaxation dynamics of the three-dimensional Coulomb Glass model
- Aging phenomena in the two-dimensional complex Ginzburg-Landau equation
- The effect of screening on the relaxation dynamics in the Coulomb glass
- Changing the universality class of the three-dimensional Edwards-Anderson spin-glass model by selective bond dilution
- Relaxation of the Random Site Coulomb glass Model in Two Dimensions