Decoupling of diffusion from structural relaxation and spatial heterogeneity in a supercooled simple liquid
arXiv:cond-mat/0109057 · doi:10.1103/PhysRevLett.89.195701
Abstract
We report a molecular dynamics simulation of a supercooled simple monatomic glass-forming liquid. It is found that the onset of the supercooled regime results in formation of distinct domains of slow diffusion which are confined to the long-lived icosahedrally structured clusters associated with deeper minima in the energy landscape. As these domains, possessing a low-dimensional geometry, grow with cooling and percolate below , the critical temperature of the mode coupling theory, a sharp slowing down of the structural relaxation relative to diffusion is observed. It is concluded that this latter anomaly cannot be accounted for by the spatial variation in atomic mobility; instead, we explain it as a direct result of the configuration-space constraints imposed by the transient structural correlations. We also conjecture that the observed tendency for low-dimensional clustering may be regarded as a possible mechanism of fragility.
To be published in PRL
References in corpus (1)
Cited by in corpus (43)
- The role of local structure in dynamical arrest
- The Relationship of Dynamical Heterogeneity to the Adam-Gibbs and Random First-Order Transition Theories of Glass Formation
- Understanding fragility in supercooled Lennard-Jones mixtures. I. Locally preferred structures
- Grain Boundary Motion Exhibits the Dynamics of Glass-Forming Liquids
- Controlling crystallization and its absence: Proteins, colloids and patchy models
- How Do Quasicrystals Grow?
- Identification of long-lived clusters and their link to slow dynamics in a model glass former
- Locally preferred structures and many-body static correlations in viscous liquids
- Temperature dependence of spatially heterogeneous dynamics in a model of viscous silica
- Test of the Stokes-Einstein relation in a two-dimensional Yukawa liquid
- The favoured cluster structures of model glass formers
- Multiple length and time scales of dynamic heterogeneities in model glass-forming liquids: A systematic analysis of multi-point and multi-time correlations
- Structural and dynamical heterogeneity in a glass forming liquid
- Decorrelation of the static and dynamic length scales in hard-sphere glass-formers
- Growing static and dynamic length scales in a glass-forming liquid
- Lifetimes and Lengthscales of Structural Motifs in a Model Glassformer
- Strong geometric frustration in model glassformers
- Structure and kinetics in the freezing of nearly hard spheres
- Power-law distributions for the areas of the basins of attraction on a potential energy landscape
- Structural anomalies of fluids: Origins in second and higher coordination shells
- Extension of Classical Nucleation Theory for Uniformly Sheared Systems
- Locally preferred structure in simple atomic liquids
- Locally favoured structures and dynamic length scales in a simple glass-former
- Geometrical Frustration and Static Correlations in Hard-Sphere Glass Formers
- Static triplet correlations in glass-forming liquids: A molecular dynamics study
- Tetrahedrality dictates dynamics in hard spheres
- Numerical and Theoretical Study of a Monodisperse Hard-Sphere Glass Former
- Relationship between dynamical heterogeneities and stretched exponential relaxation
- Modified Stokes-Einstein Relation for Small Brownian Particles
- Investigation of the relation between local diffusivity and local inherent structures in the Kob-Andersen Lennard-Jones model
- Correlation between crystalline order and vitrification in colloidal monolayers
- Scaling law for crystal nucleation time in glasses
- An operational scheme to determine the locally preferred structure of model liquids
- Recasting a model atomistic glassformer as a system of icosahedra
- Linking dynamical heterogeneity to static amorphous order
- Characterization of the stretched exponential trap-time distributions in one-dimensional coupled map lattices
- Spatiotemporal heterogeneity of local free volumes in highly supercooled liquid
- Quantifying Structural Dynamic Heterogeneity in a Dense Two-dimensional Equilibrium Liquid
- Rotational and translational dynamics in dense fluids of patchy particles
- Following microscopic motion in a two dimensional glass-forming binary fluid
- Yielding of a Model Glassformer: an Interpretation with an Effective System of Icosahedra
- Evidence for compact cooperatively rearranging regions in a supercooled liquid
- Breakdown of diffusivity-entropy scaling in colloidal glass forming liquids