English

Linear saturation numbers of Berge-$C_3$ and Berge-$C_4$

Combinatorics 2023-06-13 v1 Discrete Mathematics

Abstract

The linear saturation number satklin(n,F)sat^{lin}_k(n,\mathcal{F}) (linear extremal number exklin(n,F)ex^{lin}_k(n,\mathcal{F})) of F\mathcal{F} is the minimum (maximum) number of hyperedges of an nn-vertex linear kk-uniform hypergraph containing no member of F\mathcal{F} as a subgraph, but the addition of any new hyperedge such that the result hypergraph is still a linear kk-uniform hypergraph creates a copy of some hypergraph in F\mathcal{F}. Determining ex3lin(nex_3^{lin}(n, Berge-C3C_3) is equivalent to the famous (6,3)-problem, which has been settled in 1976. Since then, determining the linear extremal numbers of Berge cycles was extensively studied. As the counterpart of this problem in saturation problems, the problem of determining the linear saturation numbers of Berge cycles is considered. In this paper, we prove that satklinsat^{lin}_k(nn, Berge-Ct)n1k1C_t)\ge \big\lfloor\frac{n-1}{k-1}\big\rfloor for any integers k3k\ge3, t3t\ge 3, and the equality holds if t=3t=3. In addition, we provide an upper bound for sat3lin(n,sat^{lin}_3(n, Berge-C4)C_4) and for any disconnected Berge-C4C_4-saturated linear 3-uniform hypergraph, we give a lower bound for the number of hyperedges of it.

Keywords

Cite

@article{arxiv.2306.06435,
  title  = {Linear saturation numbers of Berge-$C_3$ and Berge-$C_4$},
  author = {Changxin Wang and Junxue Zhang},
  journal= {arXiv preprint arXiv:2306.06435},
  year   = {2023}
}