arXiv · 1512.00080
A new shellability proof of an identity of Dixon
Abstract
We give a new proof of an old identity of Dixon (1865-1936) that uses tools from topological combinatorics. Dixon's identity is re-established by constructing an infinite family of non-pure simplicial complexes $Δ(n)$, indexed by the positive integers, such that the alternating sum of the numbers of faces of $Δ(n)$ of each dimension is the left-hand side of the identity. We show that $Δ(n)$ is shellable for all $n$. Then, using the fact that a shellable simplicial complex is homotopy equivalent to a wedge of spheres, we compute the Betti numbers of $Δ(n)$ by counting (via a generating function) the number of facets of $Δ(n)$ of each dimension that attach along their entire boundary in the shelling order. In other words, Dixon's identity is re-established by using the Euler-Poincaré relation.
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Ruth Davidson, Augustine O'Keefe, Daniel Parry. 2016-05-10. A new shellability proof of an identity of Dixon. https://arxiv.org/abs/1512.00080
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