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Large $(k; r, s; n, q)$-sets in Projective Spaces

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arxiv 2211.04329 v2 pith:P3BCEGNG submitted 2022-11-08 math.CO

classification math.CO
keywords setssizefracpointsasymptoticboundcontainsde-1
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abstract

A $(k; r, s; n, q)$-set (short: $(r,s)$-set) of $\mathrm{PG}(n, q)$ is a set of points $X$ with $|X| = k$ such that no $s$-space contains more than $r$ points of $X$. We investigate the asymptotic size of $(r, s)$-sets for $n$ fixed and $q \rightarrow \infty$. In particular, we show the existence of $(3, 2)$-sets of size $(1+o(1)) q^{3/2}$ for $n=6$, $(4, 2)$-sets of size $(1+o(1)) q^{\frac{n-1}{2}}$, and $(9, 2)$-sets of size $(1+o(1)) q^2$ for $n=4$. We also generalize a bound by Rao from 1947 and show that an $(r,s)$-set has size at most $O(q^{\frac{n-e+1}{e}})$ if there exist integers $d,e \geq 2$ such that $s=d(e-1)$ and $r=de-1$.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Evasive sets, twisted varieties, and container-clique trees

    math.CO 2025-07 conditional novelty 7.0 of 10

    Near-optimal evasive sets and twisted varieties exist with much smaller r, and a new container-clique tree method bounds their number.

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