We report on the study of nonequilibrium ordering in the reaction-diffusion lattice gas. It is a kinetic model that relaxes towards steady states under the simultaneous competition of a thermally activated creation-annihilation $(reaction$) process at temperature T, and a diffusion process driven by a heat bath at temperature T?T. The phase diagram as one varies T and T, the system dimension d, the relative priori probabilities for the two processes, and their dynamical rates is investigated. We compare mean-field theory, new Monte Carlo data, and known exact results for some limiting cases. In particular, no evidence of Landau critical behavior is found numerically when d=2 for Metropolis rates but Onsager critical points and a variety of ...
In broad terms, the purpose of the current work is to investigate and advance the statistical theory...
The conventional Navier-Stokes-Fourier equations with no-slip boundary conditions are unable to capt...
We introduce a general class of stochastic lattice gas models, and derive their fluctuating hydrodyn...
The lattice gas automata (LGA) technique as an alternative to the partial differential equation (PDE...
AbstractWe study a purely repulsive lattice gas model. The chemical versus temperature phase diagram...
We model reaction-diffusion systems with reactive lattice gas automata, which possess intrinsic micr...
We study a purely repulsive lattice gas model. The chemical versus temperature phase diagram is obta...
We model reaction-diffusion systems with reactive lattice gas automata, which possess intrinsic micr...
Using Monte Carlo simulations we investigate some new aspects of the phase diagram and the behavior ...
Kawasaki dynamics is used to study the transport properties of a nonequilibrium steady state system ...
We investigate the collective behavior of an Ising lattice gas, driven to non-equilibrium steady sta...
Far-from-equilibrium phenomena, while abundant in nature, are not nearly as well understood as their...
In a reaction-diffusion system, fluctuations in both diffusion and reaction events have important ef...
We investigate the relation between thermodynamic and dynamic properties of an associating lattice g...
The studies which are presented here are computer simulations of fluid phenomena based on 2D lattice...
In broad terms, the purpose of the current work is to investigate and advance the statistical theory...
The conventional Navier-Stokes-Fourier equations with no-slip boundary conditions are unable to capt...
We introduce a general class of stochastic lattice gas models, and derive their fluctuating hydrodyn...
The lattice gas automata (LGA) technique as an alternative to the partial differential equation (PDE...
AbstractWe study a purely repulsive lattice gas model. The chemical versus temperature phase diagram...
We model reaction-diffusion systems with reactive lattice gas automata, which possess intrinsic micr...
We study a purely repulsive lattice gas model. The chemical versus temperature phase diagram is obta...
We model reaction-diffusion systems with reactive lattice gas automata, which possess intrinsic micr...
Using Monte Carlo simulations we investigate some new aspects of the phase diagram and the behavior ...
Kawasaki dynamics is used to study the transport properties of a nonequilibrium steady state system ...
We investigate the collective behavior of an Ising lattice gas, driven to non-equilibrium steady sta...
Far-from-equilibrium phenomena, while abundant in nature, are not nearly as well understood as their...
In a reaction-diffusion system, fluctuations in both diffusion and reaction events have important ef...
We investigate the relation between thermodynamic and dynamic properties of an associating lattice g...
The studies which are presented here are computer simulations of fluid phenomena based on 2D lattice...
In broad terms, the purpose of the current work is to investigate and advance the statistical theory...
The conventional Navier-Stokes-Fourier equations with no-slip boundary conditions are unable to capt...
We introduce a general class of stochastic lattice gas models, and derive their fluctuating hydrodyn...