First order phase transition in a 1+1-dimensional nonequilibrium wetting process
arXiv:cond-mat/9906039 · doi:10.1103/PhysRevE.61.R1032
Abstract
A model for nonequilibrium wetting in 1+1 dimensions is introduced. It comprises adsorption and desorption processes with a dynamics which generically does not obey detailed balance. Depending on the rates of the dynamical processes the wetting transition is either of first or second order. It is found that the wet (unbound) and the non-wet (pinned) states coexist and are both thermodynamically stable in a domain of the dynamical parameters which define the model. This is in contrast with equilibrium transitions where coexistence of thermodynamically stable states takes place only on the transition line.
4 pages, RevTeX, including 4 eps figures
Cited by in corpus (28)
- Nonequilibrium Critical Phenomena and Phase Transitions into Absorbing States
- Exact Phase Diagram of a model with Aggregation and Chipping
- Extremal Paths on a Random Cayley Tree
- Non-equilibrium Phase Transitions with Long-Range Interactions
- Quenched disorder forbids discontinuous transitions in nonequilibrium low-dimensional systems
- Stochastic theory of synchronization transitions in extended systems
- First order phase transition in a nonequilibrium growth process
- Directed Percolation with long-range interactions: modeling non-equilibrium wetting
- Nonequilibrium wetting transitions with short range forces
- Wetting under non-equilibrium conditions
- Entropy production at criticality in a nonequilibrium Potts model
- From multiplicative noise to directed percolation in wetting transitions
- Contact processes with long-range interactions
- Stochastic theory of non-equilibrium wetting
- Nonequilibrium wetting of finite samples
- Adsorbed films of three-patch colloids: Continuous and discontinuous transitions between thick and thin films
- First-order Synchronization Transition in Locally Coupled Maps
- Influence of diffusion on models for non-equilibrium wetting
- Dynamics of the two-dimensional directed Ising model: zero-temperature coarsening
- Nonequilibrium wetting
- First order phase transition with a logarithmic singularity in a model with absorbing states
- Numerical study of a model for non-equilibrium wetting
- Dynamic wetting with two competing adsorbates
- The diffusive pair contact process and non-equilibrium wetting
- Critical wetting of a class of nonequilibrium interfaces: A computer simulation study
- Systems with superabsorbing states
- Generic phase coexistence in the totally asymmetric kinetic Ising model
- Nonequilibrium wetting transition in a nonthermal 2D Ising model