English

Maintenance of order in a moving strong condensate

Statistical Mechanics 2015-05-26 v3

Abstract

We investigate the conditions under which a moving condensate may exist in a driven mass transport system. Our paradigm is a minimal mass transport model in which n1n-1 particles move simultaneously from a site containing n>1n>1 particles to the neighbouring site in a preferred direction. In the spirit of a Zero-Range process the rate u(n)u(n) of this move depends only on the occupation of the departure site. We study a hopping rate u(n)=1+b/nαu(n) = 1 + b/n^\alpha numerically and find a moving strong condensate phase for b>bc(α)b > b_c(\alpha) for all α>0\alpha >0. This phase is characterised by a condensate that moves through the system and comprises a fraction of the system's mass that tends to unity. The mass lost by the condensate as it moves is constantly replenished from the trailing tail of low occupancy sites that collectively comprise a vanishing fraction of the mass. We formulate an approximate analytical treatment of the model that allows a reasonable estimate of bc(α)b_c(\alpha) to be obtained. We show numerically (for α=1\alpha=1) that the transition is of mixed order, exhibiting exhibiting a discontinuity in the order parameter as well as a diverging length scale as bbcb\searrow b_c.

Keywords

Cite

@article{arxiv.1407.1668,
  title  = {Maintenance of order in a moving strong condensate},
  author = {Justin Whitehouse and André Costa and Richard A Blythe and Martin R Evans},
  journal= {arXiv preprint arXiv:1407.1668},
  year   = {2015}
}

Comments

15 figs, 20 pages