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Counting genus one partitions and permutations

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abstract

We prove the conjecture by M. Yip stating that counting genus one partitions by the number of their elements and parts yields, up to a shift of indices, the same array of numbers as counting genus one rooted hypermonopoles. Our proof involves representing each genus one permutation by a four-colored noncrossing partition. This representation may be selected in a unique way for permutations containing no trivial cycles. The conclusion follows from a general generating function formula that holds for any class of permutations that is closed under the removal and reinsertion of trivial cycles. Our method also provides a new way to count rooted hypermonopoles of genus one, and puts the spotlight on a class of genus one permutations that is invariant under an obvious extension of the Kreweras duality map to genus one permutations.

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2025 1

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CONDITIONAL 1

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  • Energy dynamics in a class of local random matrix Hamiltonians cond-mat.stat-mech · 2025-02-07 · conditional · none · ref 54 · internal anchor

    Energy dynamics in a class of local random matrix Hamiltonians is exactly mapped, in a large local Hilbert space limit, to single-particle hopping on a lattice or Bethe tree.