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Two (Known) Results About Graphs with No Short Odd Cycles

Discrete Mathematics 2018-10-05 v2

Abstract

Consider a graph with nn vertices where the shortest odd cycle is of length >2k+1>2k+1. We revisit two known results about such graphs: (I) Such a graph is almost bipartite, in the sense that it can be made bipartite by removing from it O((n/k)log(n/k))O\bigl( (n/k) \log (n/k) \bigr) vertices. While this result is known [GKL97] -- our new proof seems to yield slightly better constants, and is (arguably) conceptually simpler. To this end, we state (and prove) a version of CKR partitions [CKR01, FRT04] that has a small vertex separator, and it might be of independent interest. While this must be known in the literature, we were unable to find a reference to it, and it is included for the sake of completeness. (II) While such graphs can be quite dense (e.g., consider a the bipartite clique, which has no odd cycles), they have a large independent set. Specifically, we prove that such graphs have independent sets of size (1o(1))nk/(k+1)\geq \bigl(1-o(1)\bigr)n^{k/(k+1)}. Again, this result is known and is implied by the work of Shearer [She95], but our proof is simpler and (seems to) yield a better constant.

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Cite

@article{arxiv.1810.01832,
  title  = {Two (Known) Results About Graphs with No Short Odd Cycles},
  author = {Sariel Har-Peled and Saladi Rahul},
  journal= {arXiv preprint arXiv:1810.01832},
  year   = {2018}
}

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R2 v1 2026-06-23T04:27:29.583Z