We investigate a driven diffusive lattice gas model with two oppositely moving species of particles. The model is motivated by bi-directional traffic of ants on a pre-existing trail. A third species, corresponding to pheromones used by the ants for communication, is not conserved and mediates interactions between the particles. Here we study the spatio-temporal organization of the particles. In the uni-directional variant of this model it is known to be determined by the formation and coarsening of ``loose clusters''. For our bi-directional model, we show that the interaction of oppositely moving clusters is essential. In the late stages of evolution the cluster size oscillates because of a competition between their `shredding' during encou...
We develop n-cluster mean-field theories (1≤ n ≤ 4) for calculating the flux and the gap...
We consider a zero-range process with two species of interacting particles. The steady state phase ...
The transition of a counter-chemotactic particle flow from a free-flow state to a jammed state in a ...
We investigate a driven diffusive lattice gas model with two oppositely moving species of particle. ...
We study domain growth properties of two species of particles executing biased diffusion on a half-f...
A recently proposed stochastic cellular automaton model [J. Phys. A 35, L573 (2002)], motivated by t...
The emergence of clustering and coarsening in crowded ensembles of self-propelled agents is studied ...
We discuss stationary aspects of a set of driven lattice gases in which hard-core particles with spa...
We study the dynamics of a lattice gas with two species of "charged" diffusing particles in the pres...
In this thesis I study a model of self propelled particles exhibiting run-and tumble dynamics on la...
This paper intends to revisit the behaviour of a lattice-gas cellular automaton model of swarming, i...
We study three different lattice models in which two species of diffusing particles are driven in op...
There are two modes by which clusters of aggregating particles can coalesce: The clusters can merge ...
We suggest that coarsening dynamics can be described in terms of a generalized random walk, with the...
There are two modes by which clusters of aggregating particles can coalesce: The clusters can merge ...
We develop n-cluster mean-field theories (1≤ n ≤ 4) for calculating the flux and the gap...
We consider a zero-range process with two species of interacting particles. The steady state phase ...
The transition of a counter-chemotactic particle flow from a free-flow state to a jammed state in a ...
We investigate a driven diffusive lattice gas model with two oppositely moving species of particle. ...
We study domain growth properties of two species of particles executing biased diffusion on a half-f...
A recently proposed stochastic cellular automaton model [J. Phys. A 35, L573 (2002)], motivated by t...
The emergence of clustering and coarsening in crowded ensembles of self-propelled agents is studied ...
We discuss stationary aspects of a set of driven lattice gases in which hard-core particles with spa...
We study the dynamics of a lattice gas with two species of "charged" diffusing particles in the pres...
In this thesis I study a model of self propelled particles exhibiting run-and tumble dynamics on la...
This paper intends to revisit the behaviour of a lattice-gas cellular automaton model of swarming, i...
We study three different lattice models in which two species of diffusing particles are driven in op...
There are two modes by which clusters of aggregating particles can coalesce: The clusters can merge ...
We suggest that coarsening dynamics can be described in terms of a generalized random walk, with the...
There are two modes by which clusters of aggregating particles can coalesce: The clusters can merge ...
We develop n-cluster mean-field theories (1≤ n ≤ 4) for calculating the flux and the gap...
We consider a zero-range process with two species of interacting particles. The steady state phase ...
The transition of a counter-chemotactic particle flow from a free-flow state to a jammed state in a ...