Relaxation dynamics in a transient network fluid with competing gel and glass phases
arXiv:1502.00249 · doi:10.1063/1.4919645
Abstract
We use computer simulations to study the relaxation dynamics of a model for oil-in-water microemulsion droplets linked with telechelic polymers. This system exhibits both gel and glass phases and we show that the competition between these two arrest mechanisms can result in a complex, three-step decay of the time correlation functions, controlled by two different localization lengthscales. For certain combinations of the parameters, this competition gives rise to an anomalous logarithmic decay of the correlation functions and a subdiffusive particle motion, which can be understood as a simple crossover effect between the two relaxation processes. We establish a simple criterion for this logarithmic decay to be observed. We also find a further logarithmically slow relaxation related to the relaxation of floppy clusters of particles in a crowded environment, in agreement with recent findings in other models for dense chemical gels. Finally, we characterize how the competition of gel and glass arrest mechanisms affects the dynamical heterogeneities and show that for certain combination of parameters these heterogeneities can be unusually large. By measuring the four-point dynamical susceptibility, we probe the cooperativity of the motion and find that with increasing coupling this cooperativity shows a maximum before it decreases again, indicating the change in the nature of the relaxation dynamics. Our results suggest that compressing gels to large densities produces novel arrested phases that have a new and complex dynamics.
16 pages, 15 figures
References in corpus (12)
- Colloidal Gels: Equilibrium and Non-Equilibrium Routes
- Universal nature of particle displacements close to glass and jamming transitions
- Length scale dependence of dynamical heterogeneity in a colloidal fractal gel
- Anomalous Dynamic Arrest in a Mixture of Big and Small Particles
- Percolation in a Model Transient Network: Rheology and Dynamic Light Scattering
- Influence of the glass transition on the liquid-gas spinodal decomposition
- Single-particle and collective slow dynamics of colloids in porous confinement
- Fractures in complex fluids: the case of transient networks
- Self-assembly and cooperative dynamics of a model colloidal gel network
- Dynamic Arrest in Polymer Melts: Competition between Packing and Intramolecular Barriers
- Static and dynamic properties of a reversible gel
- The nature of the glass and gel transitions in sticky spheres
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- Cluster structure and dynamics in gels and glasses
- Non Gaussian information of heterogeneity in Soft Matter
- Decoupling of single-particle and collective dynamics in arrested phase-separating glassy mixtures