We introduce a novel model for active particles with short-range position-dependent aligning interactions and study their behaviour in crowded environments using numerical simulations. When only active particles are present, we observe a transition from a gaseous state to the emergence of metastable clusters as the level of orientational noise is reduced. When passive particles are also present, we observe the emergence of a network of metastable channels
Abstract. Systems of self-propelled particles (SPP) interacting by a velocity alignment mechanism in...
When driven out of equilibrium, many diverse systems can form complex spatial and dynamical patterns...
A two-cluster system with a bistable potential is constructed in one-dimensional channels. Using mol...
[eng] Our aim is to mix together the Vicsek model, that settled the basis of the understanding of th...
Minimal models of active Brownian colloids consisting of self-propelled spherical par- ticles with p...
[eng] We study a system of active particles with soft repulsive interactions that lead to an active ...
We consider active particles in a heterogeneous medium, modeled by static, random obstacles. In acco...
Collective behaviour is a phenomenon that often occurs in systems of many interacting individuals. C...
Murmurations of birds, schools of fish, and herds of migrating animals are macroscale examples of se...
Active matter deals with systems whose particles consume energy at the individual level in order to ...
Systems of self-propelled particles (SPP) interacting by a velocity alignment mechanism in the prese...
We conduct Metropolis Monte Carlo simulations on models of dilute colloidal dispersions, where the p...
There are two modes by which clusters of aggregating particles can coalesce: The clusters can merge ...
Active particles may happen to be confined in channels so narrow that they cannot overtake each othe...
For a system consisting of active soft spheres in three dimensions, we study the transition from a f...
Abstract. Systems of self-propelled particles (SPP) interacting by a velocity alignment mechanism in...
When driven out of equilibrium, many diverse systems can form complex spatial and dynamical patterns...
A two-cluster system with a bistable potential is constructed in one-dimensional channels. Using mol...
[eng] Our aim is to mix together the Vicsek model, that settled the basis of the understanding of th...
Minimal models of active Brownian colloids consisting of self-propelled spherical par- ticles with p...
[eng] We study a system of active particles with soft repulsive interactions that lead to an active ...
We consider active particles in a heterogeneous medium, modeled by static, random obstacles. In acco...
Collective behaviour is a phenomenon that often occurs in systems of many interacting individuals. C...
Murmurations of birds, schools of fish, and herds of migrating animals are macroscale examples of se...
Active matter deals with systems whose particles consume energy at the individual level in order to ...
Systems of self-propelled particles (SPP) interacting by a velocity alignment mechanism in the prese...
We conduct Metropolis Monte Carlo simulations on models of dilute colloidal dispersions, where the p...
There are two modes by which clusters of aggregating particles can coalesce: The clusters can merge ...
Active particles may happen to be confined in channels so narrow that they cannot overtake each othe...
For a system consisting of active soft spheres in three dimensions, we study the transition from a f...
Abstract. Systems of self-propelled particles (SPP) interacting by a velocity alignment mechanism in...
When driven out of equilibrium, many diverse systems can form complex spatial and dynamical patterns...
A two-cluster system with a bistable potential is constructed in one-dimensional channels. Using mol...