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Doubly stochastic matrices and Schur-Weyl duality for partition algebras
Published 31 Aug 2021 in math.CO and math.RT | (2109.00107v4)
Abstract: We prove that the permutations of ${1,\dots, n}$ having an increasing (resp., decreasing) subsequence of length $n-r$ index a subset of the set of all $r$th Kronecker powers of $n \times n$ permutation matrices which is a basis for the linear span of that set. Thanks to a known Schur--Weyl duality, this gives a new basis for the centralizer algebra of the partition algebra acting on the $r$th tensor power of a vector space. We give some related results on the set of doubly stochastic matrices in that algebra.
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