English

On integral well-rounded lattices in the plane

Number Theory 2012-08-14 v1

Abstract

We investigate distribution of integral well-rounded lattices in the plane, parameterizing the set of their similarity classes by solutions of the family of Pell-type Diophantine equations of the form x2+Dy2=z2x^2+Dy^2=z^2 where D>0D>0 is squarefree. We apply this parameterization to the study of the greatest minimal norm and the highest signal-to-noise ratio on the set of such lattices with fixed determinant, also estimating cardinality of these sets (up to rotation and reflection) for each determinant value. This investigation extends previous work of the first author in the specific cases of integer and hexagonal lattices and is motivated by the importance of integral well-rounded lattices for discrete optimization problems. We briefly discuss an application of our results to planar lattice transmitter networks.

Keywords

Cite

@article{arxiv.1205.5301,
  title  = {On integral well-rounded lattices in the plane},
  author = {Lenny Fukshansky and Glenn Henshaw and Philip Liao and Matthew Prince and Xun Sun and Samuel Whitehead},
  journal= {arXiv preprint arXiv:1205.5301},
  year   = {2012}
}

Comments

12 pages, to appear in Discrete and Computational Geometry

R2 v1 2026-06-21T21:08:44.630Z