Literature DB >> 26877570

The continuum disordered pinning model.

Francesco Caravenna1, Rongfeng Sun2, Nikos Zygouras3.   

Abstract

Any renewal processes on [Formula: see text] with a polynomial tail, with exponent [Formula: see text], has a non-trivial scaling limit, known as the [Formula: see text]-stable regenerative set. In this paper we consider Gibbs transformations of such renewal processes in an i.i.d. random environment, called disordered pinning models. We show that for [Formula: see text] these models have a universal scaling limit, which we call the continuum disordered pinning model (CDPM). This is a random closed subset of [Formula: see text] in a white noise random environment, with subtle features:Any fixed a.s. property of the [Formula: see text]-stable regenerative set (e.g., its Hausdorff dimension) is also an a.s. property of the CDPM, for almost every realization of the environment.Nonetheless, the law of the CDPM is singular with respect to the law of the [Formula: see text]-stable regenerative set, for almost every realization of the environment. The existence of a disordered continuum model, such as the CDPM, is a manifestation of disorder relevance for pinning models with [Formula: see text].

Entities:  

Keywords:  Disorder relevance; Fell–Matheron topology; Hausdorff metric; Pinning model; Random polymer; Scaling limit; Weak disorder; Wiener Chaos expansion

Year:  2014        PMID: 26877570      PMCID: PMC4739578          DOI: 10.1007/s00440-014-0606-4

Source DB:  PubMed          Journal:  Probab Theory Relat Fields        ISSN: 0178-8051            Impact factor:   2.391


  1 in total

1.  Intermediate disorder regime for directed polymers in dimension 1+1.

Authors:  Tom Alberts; Kostya Khanin; Jeremy Quastel
Journal:  Phys Rev Lett       Date:  2010-08-24       Impact factor: 9.161

  1 in total

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