English

Teichmuller theory and handle addition for minimal surfaces

Differential Geometry 2009-09-25 v2

Abstract

We develop Teichmuller theoretical methods to construct new minimal surfaces in \BE3\BE^3 by adding handles and planar ends to existing minimal surfaces in \BE3\BE^3. We exhibit this method on an interesting class of minimal surfaces which are likely to be embedded, and have a low degree Gau\ss map for their genus; the (Weierstrass data) period problem for these surfaces is of arbitrary dimension. In particular, we exhibit a two-parameter family of complete minimal surfaces in the Euclidean three-space \BE3\BE^3 which generalize the breakthrough minimal surface of C. Costa; these new surfaces are embedded (at least) outside a compact set, and are indexed (roughly) by the number of ends they have and their genus. They have at most eight self-symmetries despite being of arbitrarily large genus, and are interesting for a number of reasons. Moreover, our methods also extend to prove that some natural candidate classes of surfaces cannot be realized as minimal surfaces in \BE3\BE^3. As a result of both aspects of this work, we obtain a classification of a family of surfaces as either realizable or unrealizable as minimal surfaces.

Keywords

Cite

@article{arxiv.math/9806089,
  title  = {Teichmuller theory and handle addition for minimal surfaces},
  author = {Matthias Weber and Michael Wolf},
  journal= {arXiv preprint arXiv:math/9806089},
  year   = {2009}
}

Comments

83 pages, published version

R2 v1 2026-07-22T17:58:56.365Z