For more than a century Liesegang patterns – self-organized, quasi-periodic structures occurring in diffusion-limited chemical reactions with two components – have been attracting scientists. The pattern formation can be described by four basic empirical laws. In addition to many experiments, several models have been devised to understand the formation of the bands and rings. Here we review the most important models and complement them with detailed three-dimensional lattice-gas simulations. We show how the mean-field predictions can be reconciled with experimental data by a redefinition of the distances suggested by our lattice-gas simulations
We studied the self-similar properties of the phase spaces of two frustrated spin models and two lat...
Simulations of the Liesegang pattern formation are presented that are based on a discrete stochastic...
The collective (or chemical) diffusion in interacting repulsive lattice gases is studied both in tri...
Using lattice-gas simulations we show that Liesegang pattern formation in reaction-diffusion system...
Abstract-The Liesegang pattern formation in three dimensional reaction-diffusion systems is numerica...
Additional contributor: Arnd Scheel (faculty mentor)This project was concerned with the study of Lie...
Cellular automata models for the formation of Liesegang structures are proposed. This novel approach...
In this article different mathematical models of the Liesegang phenomenon are exhibited. The main pr...
A microscopic approach to the formation of Liesegang patterns, based on a cellular automata model, i...
In this article different mathematical models of the Liesegang phenomenon are exhibited. The main pr...
Abstract. In this article different mathematical models of the Liesegang phenomenon are exhibited. T...
Our purpose is to start understanding from a mathematical viewpoint experiments in which regularized...
We model reaction-diffusion systems with reactive lattice gas automata, which possess intrinsic micr...
A lattice-gas model for the chemical diffusion of NH3 on Re(0001) is presented. The system is modell...
Understanding how patterns and travelling waves form in chemical and biological reaction-diffusion m...
We studied the self-similar properties of the phase spaces of two frustrated spin models and two lat...
Simulations of the Liesegang pattern formation are presented that are based on a discrete stochastic...
The collective (or chemical) diffusion in interacting repulsive lattice gases is studied both in tri...
Using lattice-gas simulations we show that Liesegang pattern formation in reaction-diffusion system...
Abstract-The Liesegang pattern formation in three dimensional reaction-diffusion systems is numerica...
Additional contributor: Arnd Scheel (faculty mentor)This project was concerned with the study of Lie...
Cellular automata models for the formation of Liesegang structures are proposed. This novel approach...
In this article different mathematical models of the Liesegang phenomenon are exhibited. The main pr...
A microscopic approach to the formation of Liesegang patterns, based on a cellular automata model, i...
In this article different mathematical models of the Liesegang phenomenon are exhibited. The main pr...
Abstract. In this article different mathematical models of the Liesegang phenomenon are exhibited. T...
Our purpose is to start understanding from a mathematical viewpoint experiments in which regularized...
We model reaction-diffusion systems with reactive lattice gas automata, which possess intrinsic micr...
A lattice-gas model for the chemical diffusion of NH3 on Re(0001) is presented. The system is modell...
Understanding how patterns and travelling waves form in chemical and biological reaction-diffusion m...
We studied the self-similar properties of the phase spaces of two frustrated spin models and two lat...
Simulations of the Liesegang pattern formation are presented that are based on a discrete stochastic...
The collective (or chemical) diffusion in interacting repulsive lattice gases is studied both in tri...