English

Hyperbolic Gradient Flow: Evolution of Graphs in R^{n+1}

Differential Geometry 2016-09-09 v1 Analysis of PDEs

Abstract

In this paper we introduce a new geometric flow --- the hyperbolic gradient flow for graphs in the (n+1)(n+1)-dimensional Euclidean space Rn+1\mathbb{R}^{n+1}. This kind of flow is new and very natural to understand the geometry of manifolds. We particularly investigate the global existence of the evolution of convex hypersurfaces in Rn+1\mathbb{R}^{n+1} and the evolution of plane curves, and prove that, under the hyperbolic gradient flow, they converge to the hyperplane and the straight line, respectively, when tt goes to the infinity. Our results show that the theory of shock waves of hyperbolic conservation laws can be naturally applied to do surgery on manifolds. Some fundamental but open problems are also given.

Keywords

Cite

@article{arxiv.1009.3993,
  title  = {Hyperbolic Gradient Flow: Evolution of Graphs in R^{n+1}},
  author = {De-Xing Kong and Kefeng Liu},
  journal= {arXiv preprint arXiv:1009.3993},
  year   = {2016}
}

Comments

16 pages, 3 figures, This paper was accepted by the proceeding of the conference in honor of Professers Zhengguo Bai and Yibing Shen's birthdays, June 2010

R2 v1 2026-06-21T16:16:39.315Z