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Affine Schubert calculus and double coinvariants
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abstract
We define an action of the double coinvariant algebra $DR_n$ on the equivariant Borel-Moore homology of the affine flag variety $\widetilde{Fl}_n$ in type $A$, which has an explicit form in terms of the left and right action of the (extended) affine Weyl group and multiplication by Chern classes. Up to first order in the augmentation ideal, we show that it coincides with the action of the Cherednik algebra on the equivariant homology of the homogeneous affine Springer fiber $\widetilde{S}_{n,n+1} \subset \widetilde{Fl}_n$ due to Yun and the second author, and therefore preserves the non-equivariant Borel-Moore homology groups $H_*(\widetilde{S}_{n,n+1})\hookrightarrow H_*(\widetilde{Fl}_n)$. We then define a geometric filtration $F_{a} H_*(\widetilde{S}_{n,n+1})=H_*(\widetilde{S}(a))$ by closed subspaces $\widetilde{S}(a)\subset \widetilde{S}_{n,n+1}$, which we prove recovers the Garsia-Stanton descent order on $DR_n$. We use this to deduce an explicit monomial basis of $DR_n$, as well as an independent proof of the (non-compositional) Shuffle Theorem.
Forward citations
Cited by 3 Pith papers
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A proof of the Fields Conjectures
The bigraded S_n-isomorphism type of the superspace coinvariant ring SR_n equals the sign-twisted permutation action on ordered set partitions, proving the Fields Conjectures.
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Proposes a monomial basis for R_n^(1,2) with proven cardinality 2^(n-1)n! matching Zabrocki's conjecture, plus a bijection equating it to segmented Smirnov word models.
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Cohomology rings of character varieties
A candidate description of the cohomology ring of genus-zero character varieties is proposed in terms of modules on the Hilbert scheme of C^2, supported by small-rank computations but left as a conjecture.
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