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Symmetric edge polytopes and matching generating polynomials

Published 19 Aug 2020 in math.CO and math.AC | (2008.08621v2)

Abstract: Symmetric edge polytopes $\mathcal{A}G$ of type A are lattice polytopes arising from the root system $A_n$ and finite simple graphs $G$. There is a connection between $\mathcal{A}_G$ and the Kuramoto synchronization model in physics. In particular, the normalized volume of $\mathcal {A}_G$ plays a central role. In the present paper, we focus on a particular class of graphs. In fact, for any cactus graph $G$, we give a formula for the $h*$-polynomial of $\mathcal{A}{\widehat{G}}$ by using matching generating polynomials, where $\widehat{G}$ is the suspension of $G$. This gives also a formula for the normalized volume of $\mathcal{A}{\widehat{G}}$. Moreover, via the chemical graph theory, we show that for any cactus graph $G$, the $h*$-polynomial of $\mathcal{A}{\widehat{G}}$ is real-rooted. Finally, we extend the discussion to symmetric edge polytopes of type $B$, which are lattice polytopes arising from the root system $B_n$ and finite simple graphs.

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