The dynamics of passive colloidal tracers in a bath of self-propelled particles is receiving a lot of attention in the context of nonequilibrium statistical mechanics. Here we demonstrate that active baths are also capable of mediating effective interactions between suspended bodies. In particular we observe that a bath of swimming bacteria gives rise to a short range attraction similar to depletion forces in equilibrium colloidal suspensions. Using numerical simulations and experiments we show how the features of this interaction arise from the combination of nonequilibrium dynamics (peculiar of bacterial baths) and excluded volume effects
Active matter is everywhere, from macroscopic to microscopic scales, we find systems such as human c...
Flocks of birds, schools of fish, and jams in traffic surprisingly mirror the collective motion obse...
The study of collective motion in bacterial suspensions has been of significant recent interest. To ...
Graduate School. This dissertation introduces novel computationally efficient PDE models, which are ...
Active matter exhibits various forms of nonequilibrium states in the absence of external forcing, in...
Thermal and viscous forces compete for dominance at the microscopic length-scales which govern the b...
This thesis is devoted to understanding the effect of inter-particle interactions, external fields a...
Thermal and viscous forces compete for dominance at the microscopic length-scales which govern the b...
In this thesis we have investigated how the dynamics of particle are affected by surface activity, w...
Despite a mounting evidence that the same gradients which active colloids use for swimming, induce i...
Despite a mounting evidence that the same gradients which active colloids use for swimming, induce i...
In this thesis we have investigated how the dynamics of particle are affected by surface activity, w...
Many biological systems are appropriately viewed as passive inclusions immersed in an active bath: f...
Collective and emergent behaviors of active colloids provide useful insights into the statistical ph...
Many biological systems are appropriately viewed as passive inclusions immersed in an active bath: f...
Active matter is everywhere, from macroscopic to microscopic scales, we find systems such as human c...
Flocks of birds, schools of fish, and jams in traffic surprisingly mirror the collective motion obse...
The study of collective motion in bacterial suspensions has been of significant recent interest. To ...
Graduate School. This dissertation introduces novel computationally efficient PDE models, which are ...
Active matter exhibits various forms of nonequilibrium states in the absence of external forcing, in...
Thermal and viscous forces compete for dominance at the microscopic length-scales which govern the b...
This thesis is devoted to understanding the effect of inter-particle interactions, external fields a...
Thermal and viscous forces compete for dominance at the microscopic length-scales which govern the b...
In this thesis we have investigated how the dynamics of particle are affected by surface activity, w...
Despite a mounting evidence that the same gradients which active colloids use for swimming, induce i...
Despite a mounting evidence that the same gradients which active colloids use for swimming, induce i...
In this thesis we have investigated how the dynamics of particle are affected by surface activity, w...
Many biological systems are appropriately viewed as passive inclusions immersed in an active bath: f...
Collective and emergent behaviors of active colloids provide useful insights into the statistical ph...
Many biological systems are appropriately viewed as passive inclusions immersed in an active bath: f...
Active matter is everywhere, from macroscopic to microscopic scales, we find systems such as human c...
Flocks of birds, schools of fish, and jams in traffic surprisingly mirror the collective motion obse...
The study of collective motion in bacterial suspensions has been of significant recent interest. To ...