English

Minimal submanifolds confined in space

Differential Geometry 2026-05-22 v2 Analysis of PDEs

Abstract

Already in R4\bf{R}^4, there are many known examples of minimal hypersurfaces, yet few structural results. We show that minimal submanifolds, of any dimension, that are confined in space are very restricted. It is well-known that the half-space theorem fails already for hypersurfaces in R4\bf{R}^4, where there are many examples contained in a slab. In R3\bf{R}^3 the height of the catenoid grows at a logarithmic rate, whereas in higher dimension the height of the catenoid remains bounded. We will see that even in high dimensions, minimal submanifolds that are confined in space must satisfy strong structural restrictions. We show that any proper minimal immersion whose height grows sublinearly must have Euclidean volume growth. A consequence is an optimal Bernstein theorem in any dimension for stable hypersurfaces with sublinearly growing height that generalizes results of Moser, Bombieri-De Giorgi-Miranda, Trudinger, Caffarelli-Nirenberg-Spruck and Ecker-Huisken.

Keywords

Cite

@article{arxiv.2605.15031,
  title  = {Minimal submanifolds confined in space},
  author = {Tobias Holck Colding and William P. Minicozzi},
  journal= {arXiv preprint arXiv:2605.15031},
  year   = {2026}
}

Comments

Context added to the introduction

R2 v1 2026-07-22T07:12:43.316Z