Polynomial bounds for chromatic number VI. Adding a four-vertex path
Abstract
A class of graphs is -bounded if there is a function such that every graph in the class has chromatic number at most , where is the clique number of ; the class is polynomially -bounded if can be taken to be a polynomial. The Gy\'arf\'as-Sumner conjecture asserts that, for every forest , the class of -free graphs (graphs with no induced copy of ) is -bounded. Let us say a forest is good if it satisfies the stronger property that the class of -free graphs is polynomially -bounded. Very few forests are known to be good: for example, it is open for the five-vertex path. Indeed, it is not even known that if every component of a forest is good then is good, and in particular, it was not known that the disjoint union of two four-vertex paths is good. Here we show the latter, and more generally, that if is good then so is the disjoint union of and a four-vertex path. We also prove a more general result: if every component of is good, and is any path (or broom) then the class of graphs that are both -free and -free is polynomially -bounded.
Keywords
Cite
@article{arxiv.2202.10412,
title = {Polynomial bounds for chromatic number VI. Adding a four-vertex path},
author = {Maria Chudnovsky and Alex Scott and Paul Seymour and Sophie Spirkl},
journal= {arXiv preprint arXiv:2202.10412},
year = {2023}
}
Comments
Accepted manuscript; see DOI for journal version