Dynamic Glass Transition in Two Dimensions
arXiv:cond-mat/0703173 · doi:10.1103/PhysRevE.76.011508
Abstract
The question about the existence of a structural glass transition in two dimensions is studied using mode coupling theory (MCT). We determine the explicit d-dependence of the memory functional of mode coupling for one-component systems. Applied to two dimensions we solve the MCT equations numerically for monodisperse hard discs. A dynamic glass transition is found at a critical packing fraction phi_c^{d=2} = 0.697 which is above phi_c^{d=3} = 0.516 by about 35%. phi^d_c scales approximately with phi^d_{\rm rcp} the value for random close packing, at least for d=2, 3. Quantities characterizing the local, cooperative 'cage motion' do not differ much for d=2 and d=3, and we e.g. find the Lindemann criterion for the localization length at the glass transition. The final relaxation obeys the superposition principle, collapsing remarkably well onto a Kohlrausch law. The d=2 MCT results are in qualitative agreement with existing results from MC and MD simulations. The mean squared displacements measured experimentally for a quasi-two-dimensional binary system of dipolar hard spheres can be described satisfactorily by MCT for monodisperse hard discs over four decades in time provided the experimental control parameter Gamma (which measures the strength of dipolar interactions) and the packing fraction phi are properly related to each other.
14 pages, 15 figures
References in corpus (4)
Cited by in corpus (48)
- Glass transitions in two-dimensional suspensions of colloidal ellipsoids
- Nonlinear response of dense colloidal suspensions under oscillatory shear: Mode-coupling theory and FT-rheology experiments
- Nonlinear rheology of colloidal dispersions
- Solid superheating observed in two-dimensional strongly-coupled dusty plasma
- From Equilibrium to Steady State: The Transient Dynamics of Colloidal Liquids under Shear
- The experimental realization of a two-dimensional colloidal model system
- Mode-Coupling Theory as a Mean-Field Description of the Glass Transition
- Glass Transition in Confined Geometry
- Mode-Coupling Theory for Active Brownian Particles
- Glass transition of hard spheres in high dimensions
- Heterogeneous and anisotropic dynamics of a 2D gel
- Ultra-fast quenching of binary colloidal suspensions in an external magnetic field
- The Localization Transition of the Two-Dimensional Lorentz Model
- Overshoots in stress strain curves: Colloid experiments and schematic mode coupling theory
- Multiple reentrant glass transitions in confined hard-sphere glasses
- Dynamics of particles and cages in an experimental 2D glass former
- Mode-coupling theory of the glass transition for confined fluids
- Slow dynamics in a quasi-two-dimensional binary complex plasma
- Tests of mode-coupling theory in two dimensions
- Numerical and Theoretical Study of a Monodisperse Hard-Sphere Glass Former
- Correlations of plasticity in sheared glasses
- Partial clustering prevents global crystallization in a binary 2D colloidal glass former
- The Glass Transition in Driven Granular Fluids: A Mode-Coupling Approach
- Discontinuous shear modulus determines the glass transition temperature
- Glass-Transition Properties from Hard Spheres to Charged Point Particles
- Effect of mixing and spatial dimension on the glass transition
- Self-subdiffusion in solutions of star-shaped crowders: non-monotonic effects of inter-particle interactions
- Dimensional study of the dynamical arrest in a random Lorentz gas
- Tagged-particle motion in a dense confined liquid
- Mode-Coupling Theory for Tagged-Particle Motion of Active Brownian Particles
- Structure and dynamics of a glass-forming binary complex plasma with non-reciprocal interaction
- Single-Particle Dynamics in Dense Granular Fluids under Driving
- Non-monotonic effect of confinement on the glass transition
- Glass transition of binary mixtures of dipolar particles in two dimensions
- Glassy dynamics in confinement: Planar and bulk limit of the mode-coupling theory
- Mode-coupling approach for the slow dynamics of a liquid on a spherical substrate
- Glass transition of charged particles in two-dimensional confinement
- Microrheology close to an equilibrium phase transition
- Dynamical properties of densely packed confined hard-sphere fluids
- Two-dimensional colloidal mixtures in magnetic and gravitational fields
- Glassy Dynamics of Brownian Particles with Velocity-Dependent Friction
- Density scaling of generalized Lennard-Jones fluids in different dimensions
- Dynamic properties of quasi-confined colloidal hard-sphere liquids near the glass transition
- Tagged-particle dynamics in confined colloidal liquids
- The thermal jamming transition of soft harmonic disks in two dimensions
- Hard discs under steady shear: comparison of Brownian dynamics simulations and mode coupling theory
- Glass transition in colloidal monolayers controlled by light-induced caging
- Tagged-particle motion in quasi-confined colloidal hard-sphere liquids