Ribbonlength of torus knots
Geometric Topology
2007-05-23 v1
Abstract
Using Kauffman's model of flat knotted ribbons, we demonstrate how all regular polygons of at least seven sides can be realised by ribbon constructions of torus knots. We calculate length to width ratios for these constructions thereby bounding the Ribbonlength of the knots. In particular, we give evidence that the closed (respectively, truncation) Ribbonlength of a (q+1,q) torus knot is (2q+1)cot(\pi/(2q+1)) (resp., 2q cot(\pi/(2q+1))). Using these calculations, we provide the bounds c_1 \leq 2/\pi and c_2 \geq 5/3 cot(\pi/5) for the constants c_1 and c_2 that relate Ribbonlength R(K) and crossing number C(K) in a conjecture of Kusner: c_1 C(K) \leq R(K) \leq c_2 C(K).
Keywords
Cite
@article{arxiv.math/0410565,
title = {Ribbonlength of torus knots},
author = {Brooke Brennan and Thomas W. Mattman and Roberto Raya and Dan Tating},
journal= {arXiv preprint arXiv:math/0410565},
year = {2007}
}
Comments
11 pages, 8 figures