Active matter deals with systems whose particles consume energy at the individual level in order to move. To unravel features such as the emergence of collective structures, several models have been suggested, such as the on-lattice model of run-and-tumble particles implemented via the persistent exclusion process (PEP). In our work, we study a one-dimensional system of run-and-tumble repulsive or attractive particles, both on-lattice and off-lattice. Additionally, we implement cluster motility dynamics in the on-lattice case (since in the off-lattice case, cluster motility arises from the individual particle dynamics). While we observe important differences between discrete and continuous dynamics, few common features are of particular imp...
There are two modes by which clusters of aggregating particles can coalesce: The clusters can merge ...
In this work we explore the collective behavior of self–driven particles in active matter. We analyz...
In this work we explore the collective behavior of self–driven particles in active matter. We analyz...
The emergence of clustering and coarsening in crowded ensembles of self-propelled agents is studied ...
In the coordinated collective behaviors of biological swarms and flocks, the attractive/repulsive (A...
In the coordinated collective behaviors of biological swarms and flocks, the attractive/repulsive (A...
Self-propelled particles (SPPs) are particles who, by themselves, are able to generate persistent mo...
International audienceThe effects of quenched disorder on a single and many active run-and-tumble pa...
We present a model of soft active particles that leads to a rich array of collective behavior found ...
Collective behaviour is a phenomenon that often occurs in systems of many interacting individuals. C...
Collective dynamics is something that can be found in nature on macro and micro scale. Since the 90s...
The perplexing and intriguing world of biological systems has inaugurated a new research field in st...
International audienceWe explore the emergence of nonequilibrium collective motion in disordered non...
We present a model of soft active particles that leads to a rich array of collective behavior found ...
International audienceWe explore the emergence of nonequilibrium collective motion in disordered non...
There are two modes by which clusters of aggregating particles can coalesce: The clusters can merge ...
In this work we explore the collective behavior of self–driven particles in active matter. We analyz...
In this work we explore the collective behavior of self–driven particles in active matter. We analyz...
The emergence of clustering and coarsening in crowded ensembles of self-propelled agents is studied ...
In the coordinated collective behaviors of biological swarms and flocks, the attractive/repulsive (A...
In the coordinated collective behaviors of biological swarms and flocks, the attractive/repulsive (A...
Self-propelled particles (SPPs) are particles who, by themselves, are able to generate persistent mo...
International audienceThe effects of quenched disorder on a single and many active run-and-tumble pa...
We present a model of soft active particles that leads to a rich array of collective behavior found ...
Collective behaviour is a phenomenon that often occurs in systems of many interacting individuals. C...
Collective dynamics is something that can be found in nature on macro and micro scale. Since the 90s...
The perplexing and intriguing world of biological systems has inaugurated a new research field in st...
International audienceWe explore the emergence of nonequilibrium collective motion in disordered non...
We present a model of soft active particles that leads to a rich array of collective behavior found ...
International audienceWe explore the emergence of nonequilibrium collective motion in disordered non...
There are two modes by which clusters of aggregating particles can coalesce: The clusters can merge ...
In this work we explore the collective behavior of self–driven particles in active matter. We analyz...
In this work we explore the collective behavior of self–driven particles in active matter. We analyz...