Many different physical systems, such as granular materials, colloids, foams and emulsions exhibit a jamming transition where the system changes from a liquid-like flowing state to a solid jammed state as the packing fraction increases. These systems are often modeled using soft-core particles with repulsive contact forces. In this thesis we explore several different dynamical models for these kinds of systems, and see how they affect the behavior around the jamming transition. We investigate the effect of different types of dissipative forces on the rheology, and study how different methods of preparing a particle configuration affect their probability to jam when quenched. We study the rheology of sheared systems close to the jamming tran...
The rheology near jamming of a suspension of soft colloidal spheres is studied using a custom microf...
Many soft-matter systems show a transition between fluid-like and mechanically solid-like states whe...
We consider the problem of hard spheres shearing from rest with hydrodynamic lubrication, but no Bro...
Many different physical systems, such as granular materials, colloids, foams and emulsions exhibit a...
Many different physical systems, such as granular materials, colloids, foams and emulsions exhibit a...
Many soft-matter systems show a transition between fluid-like and mechanically solid-like states whe...
Many soft-matter systems show a transition between fluidlike and mechanically solidlike states when ...
Many soft-matter systems show a transition between fluid-like and mechanically solid-like states whe...
12 pages, 9 figs. Réf Journal: Phys. Rev. E 91, 012203 (2015)International audienceWe use large sca...
4siWe use large scale computer simulations and finite-size scaling analysis to study the shear rheol...
Many soft-matter systems show a transition between fluid-like and mechanically solid-like states whe...
Many soft-matter systems show a transition between fluid-like and mechanically solid-like states whe...
Many soft-matter systems show a transition between fluid-like and mechanically solid-like states whe...
Many soft-matter systems show a transition between fluid-like and mechanically solid-like states whe...
Amorphous materials as diverse as foams, emulsions, colloidal suspensions and granular me-dia can ja...
The rheology near jamming of a suspension of soft colloidal spheres is studied using a custom microf...
Many soft-matter systems show a transition between fluid-like and mechanically solid-like states whe...
We consider the problem of hard spheres shearing from rest with hydrodynamic lubrication, but no Bro...
Many different physical systems, such as granular materials, colloids, foams and emulsions exhibit a...
Many different physical systems, such as granular materials, colloids, foams and emulsions exhibit a...
Many soft-matter systems show a transition between fluid-like and mechanically solid-like states whe...
Many soft-matter systems show a transition between fluidlike and mechanically solidlike states when ...
Many soft-matter systems show a transition between fluid-like and mechanically solid-like states whe...
12 pages, 9 figs. Réf Journal: Phys. Rev. E 91, 012203 (2015)International audienceWe use large sca...
4siWe use large scale computer simulations and finite-size scaling analysis to study the shear rheol...
Many soft-matter systems show a transition between fluid-like and mechanically solid-like states whe...
Many soft-matter systems show a transition between fluid-like and mechanically solid-like states whe...
Many soft-matter systems show a transition between fluid-like and mechanically solid-like states whe...
Many soft-matter systems show a transition between fluid-like and mechanically solid-like states whe...
Amorphous materials as diverse as foams, emulsions, colloidal suspensions and granular me-dia can ja...
The rheology near jamming of a suspension of soft colloidal spheres is studied using a custom microf...
Many soft-matter systems show a transition between fluid-like and mechanically solid-like states whe...
We consider the problem of hard spheres shearing from rest with hydrodynamic lubrication, but no Bro...