Dynamics of Embedded Curves by Doubly-Nonlocal Reaction-Diffusion Systems
Abstract
We study a class of nonlocal, energy-driven dynamical models that govern the motion of closed, embedded curves from both an energetic and dynamical perspective. Our energetic results provide a variety of ways to understand physically motivated energetic models in terms of more classical, combinatorial measures of complexity for embedded curves. This line of investigation culminates in a family of complexity bounds that relate a rather broad class of models to a generalized, or weighted, variant of the crossing number. Our dynamic results include global well-posedness of the associated partial differential equations, regularity of equilibria for these flows as well as a more detailed investigation of dynamics near such equilibria. Finally, we explore a few global dynamical properties of these models numerically.
Cite
@article{arxiv.1711.08104,
title = {Dynamics of Embedded Curves by Doubly-Nonlocal Reaction-Diffusion Systems},
author = {James H. von Brecht and Ryan Blair},
journal= {arXiv preprint arXiv:1711.08104},
year = {2017}
}
Comments
49 pages, 3 figures