Efficient recurrence for the enumeration of permutations with fixed pinnacle set
Abstract
Initiated by Davis, Nelson, Petersen and Tenner (2018), the enumerative study of pinnacle sets of permutations has attracted a fair amount of attention recently. In this article, we provide a recurrence that can be used to compute efficiently the number of permutations of size with a given pinnacle set , with arithmetic complexity for of size . A symbolic expression can also be computed in this way for pinnacle sets of fixed size. A weighted sum of proposed in Davis, Nelson, Petersen and Tenner (2018) seems to have a simple form, and a conjectural form is given recently by Flaque, Novelli and Thibon (2021+). We settle the problem by providing and proving an alternative form of , which has a strong combinatorial flavor. We also study admissible orderings of a given pinnacle set, first considered by Rusu (2020) and characterized by Rusu and Tenner (2021), and we give an efficient algorithm for their counting.
Cite
@article{arxiv.2106.09147,
title = {Efficient recurrence for the enumeration of permutations with fixed pinnacle set},
author = {Wenjie Fang},
journal= {arXiv preprint arXiv:2106.09147},
year = {2023}
}
Comments
18 pages, 1 figure