On the Ehrhart Theory of Generalized Symmetric Edge Polytopes

Fuente: arXiv
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Hauptverfasser: Davis, Robert, Higashitani, Akihiro, Ohsugi, Hidefumi
Format: Preprint
Veröffentlicht: 2024
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author Davis, Robert
Higashitani, Akihiro
Ohsugi, Hidefumi
author_facet Davis, Robert
Higashitani, Akihiro
Ohsugi, Hidefumi
contents The symmetric edge polytope (SEP) of a (finite, undirected) graph is a centrally symmetric lattice polytope whose vertices are defined by the edges of the graph. SEPs have been studied extensively in the past twenty years. Recently, Tóthmérész and, independently, D'Alí, Juhnke-Kubitzke, and Koch generalized the definition of an SEP to regular matroids, which are the matroids that can be represented by totally unimodular matrices. Generalized SEPs are known to have symmetric Ehrhart $h^*$-polynomials, and Ohsugi and Tsuchiya conjectured that (ordinary) SEPs have nonnegative $γ$-vectors. In this article, we use combinatorial and Gröbner basis techniques to extend additional known properties of SEPs to generalized SEPs. Along the way, we show that generalized SEPs are not necessarily $γ$-nonnegative by providing explicit examples. We prove that the polytopes we construct are ``nearly'' $γ$-nonnegative in the sense that, by deleting exactly two elements from the matroid, one obtains SEPs for graphs that are $γ$-nonnegative. This provides further evidence that Ohsugi and Tsuchiya's conjecture holds in the ordinary case.
format Preprint
id arxiv_https___arxiv_org_abs_2401_03383
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle On the Ehrhart Theory of Generalized Symmetric Edge Polytopes
Davis, Robert
Higashitani, Akihiro
Ohsugi, Hidefumi
Combinatorics
52B20, 52B40, 05A15
The symmetric edge polytope (SEP) of a (finite, undirected) graph is a centrally symmetric lattice polytope whose vertices are defined by the edges of the graph. SEPs have been studied extensively in the past twenty years. Recently, Tóthmérész and, independently, D'Alí, Juhnke-Kubitzke, and Koch generalized the definition of an SEP to regular matroids, which are the matroids that can be represented by totally unimodular matrices. Generalized SEPs are known to have symmetric Ehrhart $h^*$-polynomials, and Ohsugi and Tsuchiya conjectured that (ordinary) SEPs have nonnegative $γ$-vectors. In this article, we use combinatorial and Gröbner basis techniques to extend additional known properties of SEPs to generalized SEPs. Along the way, we show that generalized SEPs are not necessarily $γ$-nonnegative by providing explicit examples. We prove that the polytopes we construct are ``nearly'' $γ$-nonnegative in the sense that, by deleting exactly two elements from the matroid, one obtains SEPs for graphs that are $γ$-nonnegative. This provides further evidence that Ohsugi and Tsuchiya's conjecture holds in the ordinary case.
title On the Ehrhart Theory of Generalized Symmetric Edge Polytopes
topic Combinatorics
52B20, 52B40, 05A15
url https://arxiv.org/abs/2401.03383