The Relationship of Dynamical Heterogeneity to the Adam-Gibbs and Random First-Order Transition Theories of Glass Formation
arXiv:1302.5029 · doi:10.1063/1.4790138
Abstract
We carefully examine common measures of dynamical heterogeneity for a model polymer melt and test how these scales compare with those hypothesized by the Adam and Gibbs (AG) and random first-order transition (RFOT) theories of relaxation in glass-forming liquids. To this end, we first analyze clusters of highly mobile particles, the string-like collective motion of these mobile particles, and clusters of relative low mobility. We show that the time scale of the high-mobility clusters and strings is associated with a diffusive time scale, while the low-mobility particles' time scale relates to a structural relaxation time. We find a high degree of similarity in the geometrical structure of these particle clusters. In particular, we show that the fractal dimensions of these clusters are consistent with those of swollen branched polymers or branched polymers with screened excluded-volume interactions. In contrast, the fractal dimension of the strings crosses over from that of self-avoiding walks for small strings, to simple random walks for longer, {more strongly interacting, strings, corresponding to flexible polymers with screened excluded-volume interactions. We examine the appropriateness of identifying the size scales of either mobile particle clusters or strings with the size of cooperatively rearranging regions (CRR) in the AG and RFOT theories. We find that the string size appears to be the most consistent measure of CRR for both the AG and RFOT models. Identifying strings or clusters with the "mosaic" length of the RFOT model relaxes the conventional assumption that the "entropic droplets" are compact. We also confirm the validity of the entropy formulation of the AG theory, constraining the exponent values of the RFOT theory. This constraint, together with the analysis of size scales, enables us to estimate the characteristic exponents of RFOT.
To appear in a special topic section on the Glass Transition in The Journal of Chemical Physics
References in corpus (7)
- Molecular dynamics simulations of glassy polymers
- Inhomogeneous Mode-Coupling Theory and Growing Dynamic Length in Supercooled Liquids
- Growing length and time scales in glass forming liquids
- Breakdown of the Stokes-Einstein relation in two, three and four dimensions
- The Adam-Gibbs relation for glass-forming liquids in 2, 3 and 4 dimensions
- Finite Size Scaling for the Glass Transition: the Role of a Static Length Scale
- Scaling exponents for a monkey on a tree - fractal dimensions of randomly branched polymers
Cited by in corpus (51)
- The role of local structure in dynamical arrest
- Breakdown of the Stokes-Einstein relation in two, three and four dimensions
- Direct measurements of growing amorphous order and non-monotonic dynamic correlations in a colloidal glass-former
- Spatially Heterogeneous Dynamics in a Metallic Glass Forming Liquid Imaged by Electron Correlation Microscopy
- Identifying time scales for violation/preservation of Stokes-Einstein relation in supercooled water
- Thirty milliseconds in the life of a supercooled liquid
- Growing Dynamical Facilitation on Approaching the Random Pinning Colloidal Glass Transition
- The structural origin of the hard-sphere glass transition in granular packing
- Polymer Glass Formation: Role of Activation Free Energy, Configurational Entropy, and Collective Motion
- Decorrelation of the static and dynamic length scales in hard-sphere glass-formers
- Does the Adam-Gibbs relation hold in simulated supercooled liquids?
- Predicting Complex Relaxation Processes in Metallic Glass
- Theory of the Structural Glass Transition: A Pedagogical Review
- Short-time -relaxation in glass-forming liquids is cooperative in nature
- Assessing the role of static lengthscales behind glassy dynamics in polydisperse hard disks
- Fast Dynamics in a Model Metallic Glass-forming Material
- Deconstructing the glass transition through critical experiments on colloids
- Superionic UO2: A Model Anharmonic Crystalline Material
- Solid-that-flows picture of glass-forming liquids
- Glass Transition in Supercooled Liquids with Medium Range Crystalline Order
- Length scale dependence of the Stokes-Einstein and Adam-Gibbs relations in model glass formers
- Revealing the Link between Structural Relaxation and Dynamic Heterogeneity in Glass-Forming Liquids
- Equation of State and Entropy Theory Approach to Thermodynamic Scaling in Polymeric Glass-Forming Liquids
- Unraveling the success and failure of mode coupling theory from consideration of entropy
- Generalized entropy theory of glass-formation in fully flexible polymer melts
- Unified percolation scenario for the and processes in simple glass formers
- Thermodynamic-Dynamic Interrelations in Glass-Forming Polymer Fluids
- Effect of total and pair configurational entropy in determining dynamics of supercooled liquids over a range of densities
- Relaxation dynamics in a transient network fluid with competing gel and glass phases
- Diffusion dynamics of supercooled water modeled with the cage-jump motion and hydrogen-bond rearrangement
- Coarse-grained Soft-Clusters Remain non-Diffusing in the Melt State
- The microscopic origins of stretched exponential relaxation in two model glass-forming liquids as probed by simulations in the isoconfigurational ensemble
- Non-monotonic dynamic correlations beneath the surface of glass-forming liquids
- Another resolution of the configurational entropy paradox as applied to hard spheres
- Predicting protein dynamics from structural ensembles
- Fast Vibrational Modes and Slow Heterogeneous Dynamics in Polymers and Viscous Liquids
- The pseudo-two-dimensional dynamics in a system of macroscopic rolling spheres
- Connecting real glasses to mean-field models
- Effect of chain stiffness on the dynamics and microstructure of crystallizable bead-spring polymer melts
- Dynamical Susceptibilities Near Ideal Glass Transitions
- Energy barriers and cooperative motion at the surface of freestanding glassy polystyrene films
- Violation of Stokes-Einstein and Stokes-Einstein-Debye relations in polymers at the gas-supercooled liquid coexistence
- Quantifying Structural Dynamic Heterogeneity in a Dense Two-dimensional Equilibrium Liquid
- Efficient -dimensional molecular dynamics simulations for studies of the glass-jamming transition
- Atomistic mechanisms of dynamics in a two-dimensional dodecagonal quasicrystal
- Mutual Information in Molecular and Macromolecular Systems
- Temperature Dependent Heterogeneous Rotational Correlation in Lipids
- General Two-Parameter Model of Alpha-Relaxation in Glasses
- Configurational Entropy of Self Propelled Glass Formers
- Is the glassy dynamics same in 2D as in 3D? The Adam Gibbs relation test
- The Initiation of Shear Band Formation in Deformed Metallic Glasses from Soft Localized Domains