activity
20042009
most citedMatrix Product Steady States as Superposition of Product Shock Measures in 1D Driven Systems

25 citations · 62 across the 4 of their papers we have counts for

collaborators

6 papers

cond-mat.stat-mech200920 cited

Temporal evolution of product shock measures in TASEP with sublattice-parallel update

F. H. Jafarpour, S. R. Masharian

It is known that when the steady state of a one-dimensional multispecies system, which evolves via a random-sequential updating mechanism, is written in terms of a linear combinati…

cond-mat.stat-mech20084 cited

Repelling Random Walkers in a Diffusion-Coalescence System

F. H. Jafarpour, S. R. Masharian

We have shown that the steady state probability distribution function of a diffusion-coalescence system on a one-dimensional lattice of length L with reflecting boundaries can be w…

cond-mat.stat-mech200725 cited

Matrix Product Steady States as Superposition of Product Shock Measures in 1D Driven Systems

F H Jafarpour, S R Masharian

It is known that exact traveling wave solutions exist for families of (n+1)-states stochastic one-dimensional non-equilibrium lattice models with open boundaries provided that some…

cond-mat.stat-mech200613 cited

The Study of Shocks in Three-States Driven-Diffusive Systems: A Matrix Product Approach

F H Jafarpour, S R Masharian

We study the shock structures in three-states one-dimensional driven-diffusive systems with nearest neighbors interactions using a matrix product formalism. We consider the cases i…

cond-mat.stat-mech2005

Exact Shock Profile for the ASEP with Sublattice-Parallel Update

F H Jafarpour, F E Ghafari, S R Masharian

We analytically study the one-dimensional Asymmetric Simple Exclusion Process (ASEP) with open boundaries under sublattice-parallel updating scheme. We investigate the stationary s…

cond-mat.stat-mech2004

Exact Solution of a Reaction-Diffusion Model with Particle Number Conservation

F. H. Jafarpour, S. R. Masharian

We analytically investigate a 1d branching-coalescing model with reflecting boundaries in a canonical ensemble where the total number of particles on the chain is conserved. Exact…