Understanding microscale transport across heterogeneous landscapes is relevant for many phenomena in condensed matter physics, from pinning of vortices in dirty superconductors, to electrons on liquid helium, skyrmions, and active matter. Here, we experimentally investigate the clogging and jamming of field tunable interacting colloids driven through a quenched disordered landscape of fixed obstacles. We focus on the emergent phenomenon of clogging, that has been the matter of much investigation at the level of a single aperture in macroscopic and granular systems. With our colloidal system, we find that quenched disorder significantly alters the particle flow, and we provide the experimental observation of the 'Faster is Slower' effect wit...
When a large set of discrete bodies passes through a bottleneck, the flow may become intermittent du...
Based on direct numerical simulations of the coupled motion of particles and fluid, this study analy...
We consider the unidirectional particle transport in a suspension of colloidal particles which inter...
Understanding microscale transport across heterogeneous landscapes is relevant for many phenomena in...
We combine experiments and numerical simulations to investigate the emergence of clogging in a syste...
We study the collective dynamics of interacting paramagnetic colloids transported via a magnetic rat...
We study the collective dynamics of interacting paramagnetic colloids transported via a magnetic rat...
Many-particle effects in driven systems far from equilibrium lead to a rich variety of emergent phen...
We study the collective dynamics of interacting paramagnetic colloids transported via a magnetic rat...
Hydrodynamic interactions between fluid-dispersed particles are ubiquitous in soft matter and biolog...
We numerically examine colloidal particles driven over a muffin tin substrate. Previous studies of t...
We numerically examine colloidal particles driven over a muffin tin substrate. Previous studies of t...
When a large set of discrete bodies passes through a bottleneck, the flow may become intermittent du...
The purpose of this work is to examine the interplay between hydrodynamic conditions and physicochem...
Hydrodynamic interactions between fluid-dispersed particles are ubiquitous in soft matter and biolog...
When a large set of discrete bodies passes through a bottleneck, the flow may become intermittent du...
Based on direct numerical simulations of the coupled motion of particles and fluid, this study analy...
We consider the unidirectional particle transport in a suspension of colloidal particles which inter...
Understanding microscale transport across heterogeneous landscapes is relevant for many phenomena in...
We combine experiments and numerical simulations to investigate the emergence of clogging in a syste...
We study the collective dynamics of interacting paramagnetic colloids transported via a magnetic rat...
We study the collective dynamics of interacting paramagnetic colloids transported via a magnetic rat...
Many-particle effects in driven systems far from equilibrium lead to a rich variety of emergent phen...
We study the collective dynamics of interacting paramagnetic colloids transported via a magnetic rat...
Hydrodynamic interactions between fluid-dispersed particles are ubiquitous in soft matter and biolog...
We numerically examine colloidal particles driven over a muffin tin substrate. Previous studies of t...
We numerically examine colloidal particles driven over a muffin tin substrate. Previous studies of t...
When a large set of discrete bodies passes through a bottleneck, the flow may become intermittent du...
The purpose of this work is to examine the interplay between hydrodynamic conditions and physicochem...
Hydrodynamic interactions between fluid-dispersed particles are ubiquitous in soft matter and biolog...
When a large set of discrete bodies passes through a bottleneck, the flow may become intermittent du...
Based on direct numerical simulations of the coupled motion of particles and fluid, this study analy...
We consider the unidirectional particle transport in a suspension of colloidal particles which inter...