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Ballistic Phase of Self-Interacting Random Walks

Probability 2011-08-25 v2 Mathematical Physics math.MP

Abstract

We explain a unified approach to a study of ballistic phase for a large family of self-interacting random walks with a drift and self-interacting polymers with an external stretching force. The approach is based on a recent version of the Ornstein-Zernike theory developed in earlier works. It leads to local limit results for various observables (e.g. displacement of the end-point or number of hits of a fixed finite pattern) on paths of n-step walks (polymers) on all possible deviation scales from CLT to LD. The class of models, which display ballistic phase in the "universality class" discussed in the paper, includes self-avoiding walks, Domb-Joyce model, random walks in an annealed random potential, reinforced polymers and weakly reinforced random walks.

Keywords

Cite

@article{arxiv.0710.3095,
  title  = {Ballistic Phase of Self-Interacting Random Walks},
  author = {Dmitry Ioffe and Yvan Velenik},
  journal= {arXiv preprint arXiv:0710.3095},
  year   = {2011}
}

Comments

One picture and a few annoying typos corrected. Version to be published

R2 v1 2026-06-21T09:32:36.414Z