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A hypergraph bipartite Turán problem with odd uniformity

Jie Ma, Tianchi Yang

Abstract

In this paper, we investigate the hypergraph Turán number $ex(n,K^{(r)}_{s,t})$. Here, $K^{(r)}_{s,t}$ denotes the $r$-uniform hypergraph with vertex set $\left(\cup_{i\in [t]}X_i\right)\cup Y$ and edge set $\{X_i\cup \{y\}: i\in [t], y\in Y\}$, where $X_1,X_2,\cdots,X_t$ are $t$ pairwise disjoint sets of size $r-1$ and $Y$ is a set of size $s$ disjoint from each $X_i$. This study was initially explored by Erdős and has since received substantial attention in research. Recent advancements by Bradač, Gishboliner, Janzer and Sudakov have greatly contributed to a better understanding of this problem. They proved that $ex(n,K_{s,t}^{(r)})=O_{s,t}(n^{r-\frac{1}{s-1}})$ holds for any $r\geq 3$ and $s,t\geq 2$. They also provided constructions illustrating the tightness of this bound if $r\geq 4$ is {\it even} and $t\gg s\geq 2$. Furthermore, they proved that $ex(n,K_{s,t}^{(3)})=O_{s,t}(n^{3-\frac{1}{s-1}-\varepsilon_s})$ holds for $s\geq 3$ and some $ε_s>0$. Addressing this intriguing discrepancy between the behavior of this number for $r=3$ and the even cases, Bradač et al. post a question of whether \begin{equation*} \mbox{$ex(n,K_{s,t}^{(r)})= O_{r,s,t}(n^{r-\frac{1}{s-1}- \varepsilon})$ holds for odd $r\geq 5$ and any $s\geq 3$.} \end{equation*} In this paper, we provide an affirmative answer to this question, utilizing novel techniques to identify regular and dense substructures. This result highlights a rare instance in hypergraph Turán problems where the solution depends on the parity of the uniformity.

A hypergraph bipartite Turán problem with odd uniformity

Abstract

In this paper, we investigate the hypergraph Turán number . Here, denotes the -uniform hypergraph with vertex set and edge set , where are pairwise disjoint sets of size and is a set of size disjoint from each . This study was initially explored by Erdős and has since received substantial attention in research. Recent advancements by Bradač, Gishboliner, Janzer and Sudakov have greatly contributed to a better understanding of this problem. They proved that holds for any and . They also provided constructions illustrating the tightness of this bound if is {\it even} and . Furthermore, they proved that holds for and some . Addressing this intriguing discrepancy between the behavior of this number for and the even cases, Bradač et al. post a question of whether \begin{equation*} \mbox{ holds for odd and any .} \end{equation*} In this paper, we provide an affirmative answer to this question, utilizing novel techniques to identify regular and dense substructures. This result highlights a rare instance in hypergraph Turán problems where the solution depends on the parity of the uniformity.
Paper Structure (10 sections, 8 theorems, 33 equations)

This paper contains 10 sections, 8 theorems, 33 equations.

Key Result

Theorem 1.1

For any odd $r\geq 3$ and any $s\geq 3$, there exists some $\varepsilon=\varepsilon(s)>0$ depending only on $s$ such that for any positive integer $t$,

Theorems & Definitions (18)

  • Theorem 1.1
  • Definition 3.1
  • Lemma 3.2
  • Definition 3.3
  • Lemma 3.4
  • Lemma 3.5
  • proof : Proof of Theorem \ref{['thm: main']}.
  • Lemma 4.1
  • proof
  • proof : Proof of Lemma \ref{['lem: find regular subgraph']}
  • ...and 8 more