English

Phase coexistence and spatial correlations in reconstituting k-mer models

Statistical Mechanics 2016-08-02 v2

Abstract

In reconstituting k-mer models, extended objects which occupy several sites on a one dimensional lattice, undergo directed or undirected diffusion, and reconstitute -when in contact- by transferring a single monomer unit from one k-mer to the other; the rates depend on the size of participating k-mers. This polydispersed system has two conserved quantities, the number of k-mers and the packing fraction. We provide a matrix product method to write the steady state of this model and to calculate the spatial correlation functions analytically. We show that for a constant reconstitution rate, the spatial correlation exhibits damped oscillations in some density regions separated, from other regions with exponential decay, by a disorder surface. In a specific limit, this constant-rate reconstitution model is equivalent to a single dimer model and exhibits a phase coexistence similar to the one observed earlier in totally asymmetric simple exclusion process on a ring with a defect.

Keywords

Cite

@article{arxiv.1605.03859,
  title  = {Phase coexistence and spatial correlations in reconstituting k-mer models},
  author = {Amit Kumar Chatterjee and Bijoy Daga and P. K. Mohanty},
  journal= {arXiv preprint arXiv:1605.03859},
  year   = {2016}
}

Comments

9 pages, 5 eps figures

R2 v1 2026-06-22T13:59:29.662Z