Bounds for solid angles of lattices of rank three
Abstract
We find sharp absolute constants and with the following property: every well-rounded lattice of rank 3 in a Euclidean space has a minimal basis so that the solid angle spanned by these basis vectors lies in the interval . In fact, we show that these absolute bounds hold for a larger class of lattices than just well-rounded, and the upper bound holds for all. We state a technical condition on the lattice that may prevent it from satisfying the absolute lower bound on the solid angle, in which case we derive a lower bound in terms of the ratios of successive minima of the lattice. We use this result to show that among all spherical triangles on the unit sphere in with vertices on the minimal vectors of a lattice, the smallest possible area is achieved by a configuration of minimal vectors of the (normalized) face centered cubic lattice in . Such spherical configurations come up in connection with the kissing number problem.
Keywords
Cite
@article{arxiv.1006.0743,
title = {Bounds for solid angles of lattices of rank three},
author = {Lenny Fukshansky and Sinai Robins},
journal= {arXiv preprint arXiv:1006.0743},
year = {2010}
}
Comments
12 pages; to appear in the Journal of Combinatorial Theory A