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Proof of the Clustered Hadwiger Conjecture

Combinatorics 2023-06-13 v1 Discrete Mathematics

Abstract

Hadwiger's Conjecture asserts that every KhK_h-minor-free graph is properly (h1)(h-1)-colourable. We prove the following improper analogue of Hadwiger's Conjecture: for fixed hh, every KhK_h-minor-free graph is (h1)(h-1)-colourable with monochromatic components of bounded size. The number of colours is best possible regardless of the size of monochromatic components. It solves an open problem of Edwards, Kang, Kim, Oum and Seymour [\emph{SIAM J. Disc. Math.} 2015], and concludes a line of research initiated in 2007. Similarly, for fixed tst\geq s, we show that every Ks,tK_{s,t}-minor-free graph is (s+1)(s+1)-colourable with monochromatic components of bounded size. The number of colours is best possible, solving an open problem of van de Heuvel and Wood [\emph{J.~London Math.\ Soc.} 2018]. We actually prove a single theorem from which both of the above results are immediate corollaries. For an excluded apex minor, we strengthen the result as follows: for fixed ts3t\geq s\geq 3, and for any fixed apex graph XX, every Ks,tK_{s,t}-subgraph-free XX-minor-free graph is (s+1)(s+1)-colourable with monochromatic components of bounded size. The number of colours is again best possible.

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Cite

@article{arxiv.2306.06224,
  title  = {Proof of the Clustered Hadwiger Conjecture},
  author = {Vida Dujmović and Louis Esperet and Pat Morin and David R. Wood},
  journal= {arXiv preprint arXiv:2306.06224},
  year   = {2023}
}

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81 pages!