English

Qualitative Properties for a System Coupling Scaled Mean Curvature Flow and Diffusion

Analysis of PDEs 2022-05-06 v1 Differential Geometry

Abstract

We consider a system consisting of a geometric evolution equation for a hypersurface and a parabolic equation on this evolving hypersurface. More precisely, we discuss mean curvature flow scaled with a term that depends on a quantity defined on the surface coupled to a diffusion equation for that quantity. Several properties of solutions are analyzed. Emphasis is placed on to what extent the surface in our setting qualitatively evolves similar as for the usual mean curvature flow. To this end, we show that the surface area is strictly decreasing but give an example of a surface that exists for infinite times nevertheless. Moreover, mean convexity is conserved whereas convexity is not. Finally, we construct an embedded hypersurface that develops a self-intersection in the course of time. Additionally, a formal explanation of how our equations can be interpreted as a gradient flow is included.

Keywords

Cite

@article{arxiv.2205.02493,
  title  = {Qualitative Properties for a System Coupling Scaled Mean Curvature Flow and Diffusion},
  author = {Helmut Abels and Felicitas Bürger and Harald Garcke},
  journal= {arXiv preprint arXiv:2205.02493},
  year   = {2022}
}

Comments

30 pages

R2 v1 2026-06-24T11:07:55.582Z