Counting with two-level polynomials
Abstract
We examine combinatorial counting functions with two parameters, and . For fixed , these functions are (quasi-)polynomial in . As varies, the degree of this polynomial is itself polynomial in , as are the leading coefficients. We carefully define these two-level polynomials, lay out their basic algebraic properties, and provide a schema for showing a function is a two-level polynomial. Using the schema, we prove that a variety of counting functions arising in different areas of combinatorics are two-level polynomials. These include chromatic polynomials for many infinite families of graphs, partitions of an integer into a given number of parts, placing non-attacking chess pieces on a board, Sidon sets, and Sheffer sequences (including binomial type and Appell sequences).
Cite
@article{arxiv.2507.05473,
title = {Counting with two-level polynomials},
author = {Tristram Bogart and Kevin Woods},
journal= {arXiv preprint arXiv:2507.05473},
year = {2025}
}
Comments
Corrected references, 35 pages