English

The C-polynomial of a knot

Geometric Topology 2009-04-30 v2 Combinatorics

Abstract

In an earlier paper the first author defined a non-commutative A-polynomial for knots in 3-space, using the colored Jones function. The idea is that the colored Jones function of a knot satisfies a non-trivial linear q-difference equation. Said differently, the colored Jones function of a knot is annihilated by a non-zero ideal of the Weyl algebra which is generalted (after localization) by the non-commutative A-polynomial of a knot. In that paper, it was conjectured that this polynomial (which has to do with representations of the quantum group U_q(SL_2)) specializes at q=1 to the better known A-polynomial of a knot, which has to do with genuine SL_2(C) representations of the knot complement. Computing the non-commutative A-polynomial of a knot is a difficult task which so far has been achieved for the two simplest knots. In the present paper, we introduce the C-polynomial of a knot, along with its non-commutative version, and give an explicit computation for all twist knots. In a forthcoming paper, we will use this information to compute the non-commutative A-polynomial of twist knots. Finally, we formulate a number of conjectures relating the A, the C-polynomial and the Alexander polynomial, all confirmed for the class of twist knots.

Keywords

Cite

@article{arxiv.math/0504305,
  title  = {The C-polynomial of a knot},
  author = {Stavros Garoufalidis and Xinyu Sun},
  journal= {arXiv preprint arXiv:math/0504305},
  year   = {2009}
}

Comments

This is the version published by Algebraic & Geometric Topology on 11 October 2006

R2 v1 2026-07-22T17:18:09.194Z