English

Weingarten Flows in Riemannian Manifolds

Differential Geometry 2022-07-12 v2

Abstract

Given orientable Riemannian manifolds MnM^n and Mˉn+1,\bar M^{n+1}, we study flows Ft:MnMˉn+1,F_t:M^n\rightarrow\bar M^{n+1}, called Weingarten flows,in which the hypersurfaces Ft(M)F_t(M) evolve in the direction of their normal vectors with speed given by a function WW of their principal curvatures,called a Weingarten function, which is homogeneous, monotonic increasing with respect to any of its variables, and positive on the positive cone. We obtain existence results for flows with isoparametric initial data, in which the hypersurfaces Ft:MnMˉn+1F_t:M^n\rightarrow\bar M^{n+1} are all parallel, and Mˉn+1\bar M^{n+1} is either a simply connected space form or a rank-one symmetric space of noncompact type. We prove that the avoidance principle holds for Weingarten flows defined by odd Weingarten functions, and also that such flows are embedding preserving.

Keywords

Cite

@article{arxiv.2205.09566,
  title  = {Weingarten Flows in Riemannian Manifolds},
  author = {Ronaldo Freire de Lima},
  journal= {arXiv preprint arXiv:2205.09566},
  year   = {2022}
}
R2 v1 2026-06-24T11:22:19.698Z