arXiv · 2608.00691
Odd-Cycle Span Defect: A Polynomial Lower Bound and a Square-Root Upper Bound
Abstract
For a graph $G$, let $\psi(G)=\max\{\chi(G[V(C)]):C$ is an odd cycle of $G\}$, with $\psi(G)=0$ when $G$ is bipartite. For positive integers $N$, set $F(N)=\max\{\chi(G)-\psi(G):|V(G)|\le N\}$. The function $F$ measures the finite-order additive gap arising from an open problem of Erdos and Hajnal. We prove $N^{1/6-o(1)}\le F(N)<\sqrt{6N}$. The lower bound raises the finite-order scale supplied by the Cameron-Clow path-colour construction from $\log N/\log\log N$ to a fixed power of $N$. Its proof constructs a palette-code graph from a binary covering code $\mathcal{C}\subseteq\{0,1\}^p$ and establishes the exact identities $\chi(G)=2p+\ell-\rho(\mathcal{C})$ and $\psi(G)=2p$. Near-middle Hamming coverings yield the exponent $1/6$. The upper bound combines Polavarapu's connectivity theorem, the Chvatal-Erdos Hamiltonicity theorem, and maximum-independent-set stripping.
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Shuyan Chen. 2026-08-01. Odd-Cycle Span Defect: A Polynomial Lower Bound and a Square-Root Upper Bound. https://arxiv.org/abs/2608.00691
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