We investigate the simple one-dimensional driven model, the totally asymmetric exclusion process, coupled to mutually interactive Langmuir kinetics. This model is motivated by recent studies on clustering of motor proteins on microtubules. In the proposed model, the attachment and detachment rates of a particle are modified depending upon the occupancy of neighboring sites. We first obtain continuum mean-field equations and in certain limiting cases obtain analytic solutions. We show how mutual interactions increase (decrease) the effects of boundaries on the phase behavior of the model. We perform Monte Carlo simulations and demonstrate that our analytical approximations are in good agreement with the numerics over a wide range of model pa...
We study a periodic one-dimensional exclusion process composed of a driven and a diffusive part. In ...
We study a periodic one-dimensional exclusion process composed of a driven and a diffusive part. In ...
Filament-based intracellular transport involves the collective action of molecular motor proteins. E...
We investigate the simple one-dimensional driven model, the totally asymmetric exclusion process, co...
Motivated by biological transport phenomena and vehicular traffic flow we investigate the dynamics o...
We discuss a new class of driven lattice gas obtained by coupling the one dimensional totally asy...
We study the dynamics of an asymmetric simple exclusion process with open boundaries and local inter...
We study the dynamics of an asymmetric simple exclusion process with open boundaries and local inter...
In many important cellular processes, including mRNA translation, gene transcription, phosphotransfe...
The asymmetric simple exclusion process with additional Langmuir kinetics, i.e., attachment and deta...
Abstract. We present a study of exclusion processes on networks as models for complex transport phen...
Natural phenomena frequently involve a very large number of interacting molecules moving in confined...
We study a periodic one-dimensional exclusion process composed of a driven and a diffusive part. In ...
The traffic of molecular motors through open tube-like compartments is studied using lattice models....
We study a periodic one-dimensional exclusion process composed of a driven and a diffusive part. In ...
We study a periodic one-dimensional exclusion process composed of a driven and a diffusive part. In ...
We study a periodic one-dimensional exclusion process composed of a driven and a diffusive part. In ...
Filament-based intracellular transport involves the collective action of molecular motor proteins. E...
We investigate the simple one-dimensional driven model, the totally asymmetric exclusion process, co...
Motivated by biological transport phenomena and vehicular traffic flow we investigate the dynamics o...
We discuss a new class of driven lattice gas obtained by coupling the one dimensional totally asy...
We study the dynamics of an asymmetric simple exclusion process with open boundaries and local inter...
We study the dynamics of an asymmetric simple exclusion process with open boundaries and local inter...
In many important cellular processes, including mRNA translation, gene transcription, phosphotransfe...
The asymmetric simple exclusion process with additional Langmuir kinetics, i.e., attachment and deta...
Abstract. We present a study of exclusion processes on networks as models for complex transport phen...
Natural phenomena frequently involve a very large number of interacting molecules moving in confined...
We study a periodic one-dimensional exclusion process composed of a driven and a diffusive part. In ...
The traffic of molecular motors through open tube-like compartments is studied using lattice models....
We study a periodic one-dimensional exclusion process composed of a driven and a diffusive part. In ...
We study a periodic one-dimensional exclusion process composed of a driven and a diffusive part. In ...
We study a periodic one-dimensional exclusion process composed of a driven and a diffusive part. In ...
Filament-based intracellular transport involves the collective action of molecular motor proteins. E...