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arXiv:2310.14426 [math.NT]AbstractReferencesReviewsResources

The third positive element in the greedy $B_h$-set

Melvyn B. Nathanson

Published 2023-10-22Version 1

For $h \geq 1$, a $B_h$-set is a set of integers such that every integer $n$ has at most one representation in the form $n = a_{i_1} + \cdots + a_{i_h}$, where $a_{i_j} \in A$ for all $j = 1,\ldots, h$ and $a_{i_1} \leq \ldots \leq a_{i_h}$. The greedy $B_h$-set is the infinite set of nonnegative integers $\{a_0(h), a_1(h), a_2(h), \ldots \}$ constructed as follows: If $a_0(h) = 0$ and $\{a_0(h), a_1(h), a_2(h), a_3(h), \ldots, a_k(h) \}$ is a $B_h$-set, then $a_{k+1}(h)$ is the least positive integer such that $\{a_0(h), a_1(h), a_2(h), \ldots, a_k(h), a_{k+1}(h) \}$ is a $B_h$ set. Then $a_1(h) = 1$ and $a_2(h) = h+1$ for all $h$. It is proved that $a_3(h) = h^2+h+1$ for all $h$.

Comments: 5 pages
Categories: math.NT, math.CO
Subjects: 11B13, 11B34, 11B75, 11P99
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