Teichmuller theory and handle addition for minimal surfaces
Abstract
We develop Teichmuller theoretical methods to construct new minimal surfaces in by adding handles and planar ends to existing minimal surfaces in . 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 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 . 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.
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