Many soft-matter systems show a transition between fluid-like and mechanically solid-like states when the volume fraction of the material e.g. particles, drops or bubbles is increased. Using an emulsion as a model system with a precisely controllable volume fraction, we show that the entire mechanical behavior in the vicinity of the jamming point can be understood if the mechanical transition is assumed to be analogous to a phase transition. We find power-law scalings in the distance to the jamming point, in which the parameters and exponents connect the behavior above and below jamming. We propose a simple two-state model with heterogeneous dynamics to describe the transition between jammed and mobile states. The model reproduces the stead...
Emulsions and foams are commonly found in products made by industries ranging from thoseassociated w...
We study the steady-state response to applied stress in a simple scalar model of sheared colloids. O...
We investigate the jamming transition of frictional particulate systems via discrete element simulat...
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...
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...
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 different physical systems, such as granular materials, colloids, foams and emulsions exhibit a...
Numerous soft materials jam into an amorphous solid at a high packing fraction. This nonequilibrium ...
We study the steady-state response to applied stress in a simple scalar model of sheared colloids. O...
Emulsions and foams are commonly found in products made by industries ranging from thoseassociated w...
We study the steady-state response to applied stress in a simple scalar model of sheared colloids. O...
We investigate the jamming transition of frictional particulate systems via discrete element simulat...
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...
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...
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 different physical systems, such as granular materials, colloids, foams and emulsions exhibit a...
Numerous soft materials jam into an amorphous solid at a high packing fraction. This nonequilibrium ...
We study the steady-state response to applied stress in a simple scalar model of sheared colloids. O...
Emulsions and foams are commonly found in products made by industries ranging from thoseassociated w...
We study the steady-state response to applied stress in a simple scalar model of sheared colloids. O...
We investigate the jamming transition of frictional particulate systems via discrete element simulat...