Distribution of local relaxation events in an aging 3D glass: spatio-temporal correlation and dynamical heterogeneity
arXiv:1308.6327 · doi:10.1103/PhysRevE.88.022314
Abstract
We investigate the spatio-temporal distribution of microscopic relaxation events, defined through particle hops, in a model polymer glass using molecular dynamics simulations. We introduce an efficient algorithm to directly identify hops during the simulation, which allows the creation of a map of relaxation events for the whole system. Based on this map, we present density-density correlations between hops and directly extract correlation scales. These scales define collaboratively rearranging groups of particles and their size distributions are presented as a function of temperature and age. Dynamical heterogeneity is spatially resolved as the aggregation of hops into clusters, and we analyze their volume distribution and growth during aging. A direct comparison with the four-point dynamical susceptibility χ4 reveals the formation of a single dominating cluster prior to the χ4 peak, which indicates maximally correlated dynamics. An analysis of the fractal dimension of the hop clusters finds slightly non-compact shapes in excellent agreement with independent estimates from four-point correlations.
12 pages, 14 figures
References in corpus (3)
Cited by in corpus (21)
- Machine learning determination of atomic dynamics at grain boundaries
- Particle jumps in structural glasses
- Attractive versus truncated repulsive supercooled liquids: The dynamics is encoded in the pair correlation function
- On the critical exponents of the yielding transition of amorphous solids
- Deformation and flow of amorphous solids: An updated review of mesoscale elastoplastic models
- Dynamical heterogeneity in periodically deformed polymer glasses
- Understanding the fragile-to-strong transition in silica from microscopic dynamics
- Combining Machine Learning and Physics to Understand Glassy Systems
- Induced cooperative motions in a medium driven at the nanoscale: Searching for an optimum excitation period
- Identifying structural signature of dynamical heterogeneity via the local softness parameter
- Dynamic heterogeneity in polydisperse systems: A comparative study of the role of local structural order parameter and particle size
- The Role of Local Structure in the Enhanced Dynamics of Deformed Glasses
- Unraveling the dynamic slowdown in supercooled water: The role of dynamic disorder in jump motions
- Dynamical Susceptibilities Near Ideal Glass Transitions
- Correlation between rearrangements and soft modes in polymer glasses during deformation and recovery
- Persistent Homology for Structural Characterization in Disordered Systems
- Automated characterization of spatial and dynamical heterogeneity in supercooled liquids via implementation of Machine Learning
- Carbon Diffusion in Concentrated Fe-C Glasses
- Jump Events in a 3D Edwards-Anderson Spin Glass
- Universal Scaling in the Aging of the Strong Glass Former SiO
- Structure-Dynamics Correlation and Its Link to Fragility and Dynamic Heterogeneity