Formation of double glass in binary mixtures of anisotropic particles: Dynamic heterogeneities in rotations and displacements
arXiv:1309.0779 · doi:10.1103/PhysRevE.88.042317
Abstract
We study glass behavior in a mixture of elliptic and circular particles in two dimensions at low temperatures using an orientation-dependent Lennard-Jones potential. The ellipses have a mild aspect ratio () and tend to align at low temperatures, while the circular particles play the role of impurities disturbing the ellipse orientations at a concentration of 20%. These impurities have a size smaller than that of the ellipses and attract them in the homeotropic alignment. As a result, the coordination number around each impurity is mostly five or four in glassy states. We realize double glass, where both the orientations and the positions are disordered but still hold mesoscopic order. We find a strong heterogeneity in the flip motions of the ellipses, which sensitively depends on the impurity clustering. The average rotational diffusion constant is determined by rapidly flipping ellipses, which still remain even at low temperatures in our model. In contrast, the non-flip rotations (with angle changes not close to ) are mainly caused by the cooperative configuration changes involving many particles. Then, there arises a long-time heterogeneity in the non-flip rotations closely correlated with the dynamic heterogeneity in displacements.
10 pages, 11 figures
References in corpus (5)
- Coupling/decoupling between translational and rotational dynamics in a supercooled molecular liquid
- Computational probes of molecular motion in the Lewis and Whanstrom model for ortho-terphenyl
- Transitions among crystal, glass, and liquid in a binary mixture with changing particle size ratio and temperature
- Relationship between bond-breakage correlations and four-point correlations in heterogeneous glassy dynamics: Configuration changes and vibration modes
- Molecular dynamics simulation of orientational glass formation in anisotropic particle systems in three dimensions
Cited by in corpus (3)
- Molecular Dynamics Simulation of Water between Metal Walls under Electric Field: Dielectric Response and Dynamics after Field Reversal
- Orientational glass in mixtures of elliptic and circular particles: Structural heterogeneities, rotational dynamics, and rheology
- Non-Gaussian Rotational Diffusion and Swing Motion of Dumbbell Probes in Two Dimensional Colloids