English

Induced subgraphs and tree decompositions IX. Grid theorem for perforated graphs

Combinatorics 2025-03-10 v3

Abstract

The celebrated Erd\H{o}s-P\'{o}sa Theorem, in one formulation, asserts that for every c1c\geq 1, graphs with no subgraph (or equivalently, minor) isomorphic to the disjoint union of cc cycles have bounded treewidth. What can we say about the treewidth of graphs containing no induced subgraph isomorphic to the disjoint union of cc cycles? Let us call these graphs cc-perforated. While 11-perforated graphs have treewidth one, complete graphs and complete bipartite graphs are examples of 22-perforated graphs with arbitrarily large treewidth. But there are sparse examples, too: Bonamy, Bonnet, D\'{e}pr\'{e}s, Esperet, Geniet, Hilaire, Thomass\'{e} and Wesolek constructed 22-perforated graphs with arbitrarily large treewidth and no induced subgraph isomorphic to K3K_3 or K3,3K_{3,3}; we call these graphs occultations. Indeed, it turns out that a mild (and inevitable) adjustment of occultations provides examples of 22-perforated graphs with arbitrarily large treewidth and arbitrarily large girth, which we refer to as full occultations. Our main result shows that the converse also holds: for every c1c\geq 1, a cc-perforated graph has large treewidth if and only if it contains, as an induced subgraph, either a large complete graph, or a large complete bipartite graph, or a large full occultation. This distinguishes cc-perforated graphs, among graph classes purely defined by forbidden induced subgraphs, as the first to admit a grid-type theorem incorporating obstructions other than subdivided walls and their line graphs. More generally, for all c,o1c,o\geq 1, we establish a full characterization of induced subgraph obstructions to bounded treewidth in graphs containing no induced subgraph isomorphic to the disjoint union of cc cycles, each of length at least o+2o+2.

Keywords

Cite

@article{arxiv.2305.15615,
  title  = {Induced subgraphs and tree decompositions IX. Grid theorem for perforated graphs},
  author = {Bogdan Alecu and Maria Chudnovsky and Sepehr Hajebi and Sophie Spirkl},
  journal= {arXiv preprint arXiv:2305.15615},
  year   = {2025}
}
R2 v1 2026-06-28T10:45:21.380Z