English

Uniformly Area Expanding Flows in Spacetimes

Differential Geometry 2015-08-18 v1

Abstract

The central object of study of this thesis is inverse mean curvature vector flow of two-dimensional surfaces in four-dimensional spacetimes. Being a system of forward-backward parabolic PDEs, inverse mean curvature vector flow equation lacks a general existence theory. Our main contribution is proving that there exist infinitely many spacetimes, not necessarily spherically symmetric or static, that admit smooth global solutions to inverse mean curvature vector flow. Prior to our work, such solutions were only known in spherically symmetric and static spacetimes. The technique used in this thesis might be important to prove the Spacetime Penrose Conjecture, which remains open today. Given a spacetime (N4,g)(N^{4}, \overline{g}) and a spacelike hypersurface MM. For any closed surface Σ\Sigma embedded in MM satisfying some natural conditions, one can "steer" the spacetime metric g\overline{g} such that the mean curvature vector field of Σ\Sigma becomes tangential to MM while keeping the induced metric on MM. This can be used to construct more examples of smooth solutions to inverse mean curvature vector flow from smooth solutions to inverse mean curvature flow in a spacelike hypersurface.

Keywords

Cite

@article{arxiv.1508.03779,
  title  = {Uniformly Area Expanding Flows in Spacetimes},
  author = {Hangjun Xu},
  journal= {arXiv preprint arXiv:1508.03779},
  year   = {2015}
}

Comments

134 pages, 12 figures. This is my Ph.D. thesis, department of mathematics, Duke University, April 2014

R2 v1 2026-06-22T10:34:34.659Z