The glass transition of two-dimensional binary soft disk mixtures with large size ratios
arXiv:0910.2628 · doi:10.1103/PhysRevE.82.041402
Abstract
We simulate binary soft disk systems in two dimensions, and investigate how the dynamics slow as the area fraction is increased toward the glass transition. The "fragility" quantifies how sensitively the relaxation time scale depends on the area fraction, and the fragility strongly depends on the composition of the mixture. We confirm prior results for mixtures of particles with similar sizes, where the ability to form small crystalline regions correlates with fragility. However, for mixtures with particle size ratios above 1.4, we find that the fragility is not correlated with structural ordering, but rather with the spatial distribution of large particles. The large particles have slower motion than the small particles, and act as confining "walls" which slow the motion of nearby small particles. The rearrangement of these confining structures governs the lifetime of dynamical heterogeneity, that is, how long local regions exhibit anomalously fast or slow behavior. The strength of the confinement effect is correlated with the fragility and also influences the aging behavior of glassy systems.
11 pages, 10 figures
References in corpus (17)
- Direct experimental evidence of a growing length scale accompanying the glass transition
- Irreversible reorganization in a supercooled liquid originates from localised soft modes
- Probing the equilibrium dynamics of colloidal hard spheres above the mode-coupling glass transition
- Understanding fragility in supercooled Lennard-Jones mixtures. I. Locally preferred structures
- Colloidal glass transition observed in confinement
- Structure and dynamics in glass-formers: predictability at large length scales
- A Double-Transition Scenario for Anomalous Diffusion in Glass-Forming Mixtures
- Anomalous Dynamic Arrest in a Mixture of Big and Small Particles
- Structural and dynamical heterogeneity in a glass forming liquid
- Short and long range correlated motion observed in colloidal glasses and liquids
- Dynamics and structure of an aging binary colloidal glass
- On the relationship between structure and dynamics in a supercooled liquid
- Tuning the fragility of a glassforming liquid by curving space
- Transitions among crystal, glass, and liquid in a binary mixture with changing particle size ratio and temperature
- Dynamic light scattering measurements in the activated regime of dense colloidal hard spheres
- Correlations of Structure and Dynamics in an Aging Colloidal Glass
- Mobile particles in an immobile environment: Molecular Dynamics simulation of a binary Yukawa mixture
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- Measuring every particle's size from three-dimensional imaging experiments
- Decoupling of translational and rotational diffusion in quasi-2D colloidal fluids
- Tuning Pairwise Potential Can Control the Fragility of Glass-Forming Liquids: From Tetrahedral Network to Isotropic Soft Sphere Models
- Structure, compressibility factor and dynamics of highly size-asymmetric binary hard-disk liquids
- Finite-size effects in the diffusion dynamics of a glass-forming binary mixture with large size ratio