English

(k-2)-linear connected components in hypergraphs of rank k

Discrete Mathematics 2023-07-14 v1 Combinatorics

Abstract

We define a qq-linear path in a hypergraph HH as a sequence (e1,,eL)(e_1,\ldots,e_L) of edges of HH such that eiei+1[ ⁣[1,q] ⁣]|e_i \cap e_{i+1}| \in [\![1,q]\!] and eiej=e_i \cap e_j=\varnothing if ij>1|i-j|>1. In this paper, we study the connected components associated to these paths when q=k2q=k-2 where kk is the rank of HH. If k=3k=3 then q=1q=1 which coincides with the well-known notion of linear path or loose path. We describe the structure of the connected components, using an algorithmic proof which shows that the connected components can be computed in polynomial time. We then mention two consequences of our algorithmic result. The first one is that deciding the winner of the Maker-Breaker game on a hypergraph of rank 3 can be done in polynomial time. The second one is that tractable cases for the NP-complete problem of "Paths Avoiding Forbidden Pairs" in a graph can be deduced from the recognition of a special type of line graph of a hypergraph.

Keywords

Cite

@article{arxiv.2307.06752,
  title  = {(k-2)-linear connected components in hypergraphs of rank k},
  author = {Florian Galliot and Sylvain Gravier and Isabelle Sivignon},
  journal= {arXiv preprint arXiv:2307.06752},
  year   = {2023}
}
R2 v1 2026-06-28T11:29:25.356Z