Relationship between vibrations and dynamical heterogeneity in a model glass former: extended soft modes but local relaxation
arXiv:0808.2412 · doi:10.1140/epje/i2009-10531-6
Abstract
We study the relation between short-time vibrational modes and long-time relaxational dynamics in a kinetically constrained lattice gas with harmonic interactions between neighbouring particles. We find a correlation between the location of the low (high) frequency vibrational modes and regions of high (low) propensity for motion. This is similar to what was observed in continuous force systems, but our interpretation is different: in our case relaxation is due to localised excitations which propagate through the system; these localised excitations act as background disorder for the elastic network, giving rise to anomalous vibrational modes. Our results show that a correlation between spatially extended low frequency modes and high propensity regions does not imply that relaxational dynamics originates in extended soft modes. We consider other measures of elastic heterogeneity, such as non-affine displacement fields and mode localisation lengths, and discuss implications of our results to interpretations of dynamic heterogeneity more generally.
5 pages, 5 figures
References in corpus (10)
- Glassy dynamics of kinetically constrained models
- Irreversible reorganization in a supercooled liquid originates from localised soft modes
- Vibrations and diverging length scales near the unjamming transition
- Inhomogeneous elastic response of silica glass
- Nonaffine Correlations in Random Elastic Media
- Spatial structures and dynamics of kinetically constrained models for glasses
- Heterogeneous Dynamics, Marginal Stability and Soft Modes in Hard Sphere Glasses
- Heterogeneity and growing lengthscales in the dynamics of kinetically constrained lattice gases in two dimensions
- Localization behavior of vibrational modes in granular packings
- Dynamic propensity in a kinetically constrained lattice gas
Cited by in corpus (16)
- Vibrational modes identify soft spots in a sheared disordered packing
- Perspective: The Glass Transition
- Excitations are localized and relaxation is hierarchical in glass-forming liquids
- Local inversion-symmetry breaking controls the boson peak in glasses and crystals
- Calorimetric glass transition explained by hierarchical dynamic facilitation
- Predicting plasticity with soft vibrational modes: from dislocations to glasses
- Emergent Structural Mechanisms for High-Density Collective Motion Inspired by Human Crowds
- Manifestations of Dynamical Facilitation in Glassy Materials
- A simple random matrix model for the vibrational spectrum of jammed packings
- Scaling between structural relaxation and caged dynamics in Ca_{0.4}K_0.6(NO_{3})_{1.4} and glycerol: free volume, time scales and implications for the pressure-energy correlations
- Sparse random matrices and vibrational spectra of amorphous solids
- Direct link between boson-peak modes and dielectric -relaxation in glasses
- Comparing dynamic correlation lengths from an approximation to the four-point dynamic susceptibility and from the picosecond vibrational dynamics
- A small subset of normal modes mimics the properties of dynamical heterogeneity in a model supercooled liquid
- The effects of grain shape and frustration in a granular column near jamming
- Plasticity and dynamical heterogeneity in driven glassy materials