English

An algorithmic discrete gradient field and the cohomology algebra of configuration spaces of two points on complete graphs

Algebraic Topology 2024-12-18 v1

Abstract

We introduce an algorithm that constructs a discrete gradient field on any simplicial complex. We show that, in all situations, the gradient field is maximal possible and, in a number of cases, optimal. We make a thorough analysis of the resulting gradient field in the case of Munkres' discrete model for Conf(Km,2)\text{Conf}(K_m,2), the configuration space of ordered pairs of non-colliding particles on the complete graph KmK_m on mm vertices. Together with the use of Forman's discrete Morse theory, this allows us to describe in full the cohomology RR-algebra H(Conf(Km,2);R)H^*(\text{Conf}(K_m,2);R) for any commutative unital ring RR. As an application we prove that, although Conf(Km,2)\text{Conf}(K_m,2) is outside the "stable" regime, all its topological complexities are maximal possible when m4m\geq4.

Keywords

Cite

@article{arxiv.2207.07046,
  title  = {An algorithmic discrete gradient field and the cohomology algebra of configuration spaces of two points on complete graphs},
  author = {Emilio J. González and Jesús González},
  journal= {arXiv preprint arXiv:2207.07046},
  year   = {2024}
}

Comments

29 pages, 18 figures