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Multidimensional Random Polymers : A Renewal Approach

Probability 2014-12-02 v1 Statistical Mechanics Mathematical Physics math.MP

Abstract

In these lecture notes, which are based on the mini-course given at 2013 Prague School on Mathematical Statistical Physics, we discuss ballistic phase of quenched and annealed stretched polymers in random environment on Zd{\mathbb Z}^d with an emphasis on the natural renormalized renewal structures which appear in such models. In the ballistic regime an irreducible decomposition of typical polymers leads to an effectiverandom walk reinterpretation of the latter. In the annealed casethe Ornstein-Zernike theory based on this approach paves the way to an essentially complete control on the level of local limit results and invariance principles. In the quenched case, the renewal structure maps the model of stretched polymers into an effective model of directed polymers. As a result one is able to use techniques and ideas developed in the context of directed polymers in order to address issues like strong disorder in low dimensions and weak disorder in higher dimensions. Among the topics addressed: Thermodynamics of quenched and annealed models, multi-dimensional renewal theory (under Cramer's condition), renormalization and effective random walk structure of annealed polymers, very weak disorder in dimensions d4d\geq 4 and strong disorder in dimensions d=1,2d=1,2.

Keywords

Cite

@article{arxiv.1412.0229,
  title  = {Multidimensional Random Polymers : A Renewal Approach},
  author = {Dmitry Ioffe},
  journal= {arXiv preprint arXiv:1412.0229},
  year   = {2014}
}

Comments

59 pages. Lecture Notes for 2013 Prague School

R2 v1 2026-06-22T07:16:06.669Z