Path integral approach to random motion with nonlinear friction
Abstract
Using a path integral approach, we derive an analytical solution of a nonlinear and singular Langevin equation, which has been introduced previously by P.-G. de Gennes as a simple phenomenological model for the stick-slip motion of a solid object on a vibrating horizontal surface. We show that the optimal (or most probable) paths of this model can be divided into two classes of paths, which correspond physically to a sliding or slip motion, where the object moves with a non-zero velocity over the underlying surface, and a stick-slip motion, where the object is stuck to the surface for a finite time. These two kinds of basic motions underlie the behavior of many more complicated systems with solid/solid friction and appear naturally in de Gennes' model in the path integral framework.
Cite
@article{arxiv.0910.4663,
title = {Path integral approach to random motion with nonlinear friction},
author = {A. Baule and E. G. D. Cohen and H. Touchette},
journal= {arXiv preprint arXiv:0910.4663},
year = {2015}
}
Comments
18 pages, 3 figures