The intersection spectrum of 3‐chromatic intersecting hypergraphs

IF 1.6 1区 数学 Q1 MATHEMATICS Proceedings of the London Mathematical Society Pub Date : 2022-03-10 DOI:10.1112/plms.12436
Matija Bucić, Stefan Glock, B. Sudakov
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Abstract

For a hypergraph H$H$ , define its intersection spectrum I(H)$I(H)$ as the set of all intersection sizes |E∩F|$|E\cap F|$ of distinct edges E,F∈E(H)$E,F\in E(H)$ . In their seminal paper from 1973 which introduced the local lemma, Erdős and Lovász asked: how large must the intersection spectrum of a k$k$ ‐uniform 3‐chromatic intersecting hypergraph be? They showed that such a hypergraph must have at least three intersection sizes, and conjectured that the size of the intersection spectrum tends to infinity with k$k$ . Despite the problem being reiterated several times over the years by Erdős and other researchers, the lower bound of three intersection sizes has remarkably withstood any improvement until now. In this paper, we prove the Erdős–Lovász conjecture in a strong form by showing that there are at least k1/2−o(1)$k^{1/2-o(1)}$ intersection sizes. Our proof consists of a delicate interplay between Ramsey‐type arguments and a density increment approach.
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三色相交超图的相交谱
对于一个超图H$H$,定义它的相交谱I(H)$I(H)$为不同边E,F∈E(H)$E,F\in E(H)$的所有相交大小|E∩F|$|E\cap F|$的集合。在他们1973年的开创性论文中引入了局部引理,Erdős和Lovász问:一个k$k$‐均匀三色相交超图的相交谱必须有多大?他们证明了这样一个超图必须至少有三个交点大小,并推测交点谱的大小在k$k$时趋于无穷大。尽管Erdős和其他研究人员多年来多次重申了这个问题,但直到现在,三个交叉口大小的下界仍然没有明显的改进。本文通过证明至少存在k1/2−o(1)$k^{1/2-o(1)}$交集大小,以强形式证明了Erdős-Lovász猜想。我们的证明包括拉姆齐型论证和密度增量方法之间的微妙相互作用。
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来源期刊
CiteScore
2.90
自引率
0.00%
发文量
82
审稿时长
6-12 weeks
期刊介绍: The Proceedings of the London Mathematical Society is the flagship journal of the LMS. It publishes articles of the highest quality and significance across a broad range of mathematics. There are no page length restrictions for submitted papers. The Proceedings has its own Editorial Board separate from that of the Journal, Bulletin and Transactions of the LMS.
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