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A bijection for tuples of commuting permutations and a log-concavity conjecture
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abstract
Let $A(\ell,n,k)$ denote the number of $\ell$-tuples of commuting permutations of $n$ elements whose permutation action results in exactly $k$ orbits or connected components. We provide a new proof of an explicit formula for $A(\ell,n,k)$ which is essentially due to Bryan and Fulman, in their work on orbifold higher equivariant Euler characteristics. Our proof is self-contained, elementary, and relies on the construction of an explicit bijection, in order to perform the $\ell+1\rightarrow \ell$ reduction. We also investigate a conjecture by the first author, regarding the log-concavity of $A(\ell,n,k)$ with respect to $k$. The conjecture generalizes a previous one by Heim and Neuhauser related to the Nekrasov-Okounkov formula.
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Cited by 1 Pith paper
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On the Log-Concavity of the D'Arcais Polynomials for Normalised Functions
For normalised arithmetic functions, the near-diagonal coefficients of the D'Arcais polynomials are eventually log-concave in horizontal, vertical, and a new skew sense.
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