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$k$-Adjoint of Hyperplane Arrangements

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arxiv 2412.06633 v2 pith:JXCO2UJF submitted 2024-12-09 math.CO

classification math.CO
keywords mathcaladjointdecompositioncombinatorialgrassmannianhyperplanenumbersanti-monotonicity
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abstract

In this paper, we introduce the $k$-adjoint of a given hyperplane arrangement $\mathcal{A}$ associated with rank-$k$ elements in the intersection lattice $L(\mathcal{A})$, which generalizes the classical adjoint proposed by Bixby and Coullard. The $k$-adjoint of $\mathcal{A}$ induces a decomposition of the Grassmannian, which we call the $\mathcal{A}$-adjoint decomposition. Inspired by the work of Gelfand, Goresky, MacPherson, and Serganova, we generalize the matroid decomposition and refined Schubert decomposition of the Grassmannian from the perspective of $\mathcal{A}$. Furthermore, we prove that these three decompositions are exactly the same decomposition. A notable application involves providing a combinatorial classification of all the $k$-dimensional restrictions of $\mathcal{A}$. Consequently, we establish the anti-monotonicity property of some combinatorial invariants, such as Whitney numbers of the first kind and the independece numbers.

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  1. A decomposition of Grassmannian associated with a hyperplane arrangement

    math.CO 2025-06 accept novelty 5.0 of 10

    For every linear hyperplane arrangement, the A-matroid, A-adjoint, and refined A-Schubert decompositions of the Grassmannian coincide, extending the essential case.

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