Directed Paths in a Wedge
Abstract
Directed paths have been used extensively in the scientific literature as a model of a linear polymer. Such paths models in particular the conformational entropy of a linear polymer and the effects it has on the free energy. These directed models are simplified versions of the self-avoiding walk, but they do nevertheless give insight into the phase behaviour of a polymer, and also serve as a tool to study the effects of conformational degrees of freedom in the behaviour of a linear polymer. In this paper we examine a directed path model of a linear polymer in a confining geometry (a wedge). The main focus of our attention is , the number of directed lattice paths of length steps which takes steps in the North-East and South-East directions and which is confined to the wedge , where is an integer. In this paper we examine the case in detail, and we determine the generating function using the iterated kernel method. We also examine the asymtotics of . In particular, we show that where we can determine the constant to arbitrary accuracy with little effort.
Keywords
Cite
@article{arxiv.0706.4337,
title = {Directed Paths in a Wedge},
author = {E J Janse van Rensburg and T Prellberg and A Rechnitzer},
journal= {arXiv preprint arXiv:0706.4337},
year = {2015}
}