Many diffusion processes in nature and society were found to be anomalous, in the sense of being fundamentally different from conventional Brownian motion. An important example is the migration of biological cells, which exhibits non-trivial temporal decay of velocity autocorrelation functions. This means that the corresponding dynamics is characterized by memory effects that slowly decay in time. Motivated by this we construct non-Markovian lattice-gas cellular automata models for moving agents with memory. For this purpose the reorientation probabilities are derived from velocity autocorrelation functions that are given a priori; in that respect our approach is “data-driven”. Particular examples we consider are velocity correlations that ...
A random cellular automaton is one in which a cell's behaviour is independent of its previous states...
We study memory-based random walk models to understand diffusive motion in crowded heterogeneous env...
In this paper we describe a numerical method of cellular automaton type to study the diffusion proce...
Many diffusion processes in nature and society were found to be anomalous, in the sense of being fun...
Many diffusion processes in nature and society were found to be anomalous, in the sense of being fun...
We report simulations of tagged particle diffusion in three-dimensional lattice gas cellular automat...
Smooth concentration fields and balance equations for systems of random walkers are obtained by usin...
A cellular automaton (CA) is a discrete microscopic dynamical system widely used to investigate and ...
We compute the velocity autocorrelation function of a tagged particle in a two-dimensional lattice-g...
This paper deals with some very simple interacting particle systems, elementary cellular automata, i...
In low dimensions, reaction-diffusion phenomena may not be correctly described by the usual differen...
We introduce a class of cellular automata (CA) to model reaction-diffusion systems in a quantitative...
Trajectories of human breast cancer cells moving on one-dimensional circular tracks are modeled by t...
In this paper we study the space evolution in the Rule 54 reversible cellular automaton, which is a ...
We model reaction-diffusion systems with reactive lattice gas automata, which possess intrinsic micr...
A random cellular automaton is one in which a cell's behaviour is independent of its previous states...
We study memory-based random walk models to understand diffusive motion in crowded heterogeneous env...
In this paper we describe a numerical method of cellular automaton type to study the diffusion proce...
Many diffusion processes in nature and society were found to be anomalous, in the sense of being fun...
Many diffusion processes in nature and society were found to be anomalous, in the sense of being fun...
We report simulations of tagged particle diffusion in three-dimensional lattice gas cellular automat...
Smooth concentration fields and balance equations for systems of random walkers are obtained by usin...
A cellular automaton (CA) is a discrete microscopic dynamical system widely used to investigate and ...
We compute the velocity autocorrelation function of a tagged particle in a two-dimensional lattice-g...
This paper deals with some very simple interacting particle systems, elementary cellular automata, i...
In low dimensions, reaction-diffusion phenomena may not be correctly described by the usual differen...
We introduce a class of cellular automata (CA) to model reaction-diffusion systems in a quantitative...
Trajectories of human breast cancer cells moving on one-dimensional circular tracks are modeled by t...
In this paper we study the space evolution in the Rule 54 reversible cellular automaton, which is a ...
We model reaction-diffusion systems with reactive lattice gas automata, which possess intrinsic micr...
A random cellular automaton is one in which a cell's behaviour is independent of its previous states...
We study memory-based random walk models to understand diffusive motion in crowded heterogeneous env...
In this paper we describe a numerical method of cellular automaton type to study the diffusion proce...