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The first Cheeger constant of a simplex

Published 23 Oct 2016 in math.AT and math.CO | (1610.07136v2)

Abstract: The coboundary expansion generalizes the classical graph expansion to the case of the general simplicial complexes, and allows the definition of the higher-dimensional Cheeger constants hk(X)h_k(X) for an arbitrary simplicial complex XX, and any k≥0k\geq 0. In this paper we investigate the value of h1(Δ<sup>[n])h_1(\Delta<sup>{[n]}) - the first Cheeger constant of a simplex with nn vertices. It is known, due to the pioneering work of Meshulam and Wallach, that [\lceil n/3\rceil\geq h_1(\Delta{[n]})\geq n/3, \textrm{ for all } n,] and that the equality h1(Δ<sup>[n])=n/3h_1(\Delta<sup>{[n]})=n/3 is achieved when nn is divisible by $3$. Here we expand on these results. First, we show that [h_1(\Delta{[n]})=n/3, \textrm{ whenever }n\textrm{ is not a power of }2.] So the sharp equality holds on a set whose density goes to $1$. Second, we show that [h_1(\Delta{[n]})=n/3+O(1/n),\textrm{ when }n\textrm{ is a power of }2.] In other words, as nn goes to infinity, the value h1(Δ<sup>[n])−n/3h_1(\Delta<sup>{[n]})-n/3 is either $0$ or goes to $0$ very rapidly. Our methods include recasting the original question in purely graph-theoretic language, followed by a detailed investigation of a specific graph family, the so-called {\it staircase graphs}. These are defined by associating a graph to every partition, and appear to be especially suited to gain information about the first Cheeger constant of a simplex.

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