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Brill--Noether theory of smooth curves in the plane and on Hirzebruch surfaces
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abstract
In this paper, we describe the Brill--Noether theory of a general smooth plane curve and a general curve $C$ on a Hirzebruch surface of fixed class. It is natural to study the line bundles on such curves according to the splitting type of their pushforward along projection maps $C \to \mathbb{P}^1$. Inspired by Wood's parameterization of ideal classes in rings associated to binary forms, we further refine the stratification of line bundles $L$ on $C$ by fixing the splitting types of both $L$ and $L(\Delta)$, where $\Delta \subset C$ is the intersection of $C$ with the directrix of the Hirzebruch surface. Our main theorem determines the dimensions of these locally closed strata and, if the characteristic of the ground field is zero, proves that they are smooth.
Forward citations
Cited by 2 Pith papers
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The restricted Hitchin map of wobbly vector bundles
For a generic wobbly rank-2 bundle, the restricted Hitchin map is dominant with degree 2^{3g−3} − 2^{2g−2k−λ+1}.
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Brill--Noether loci in genus $\leq 12$
For every genus g ≤ 12, the paper identifies exactly which Brill–Noether loci are contained in which, yielding a complete relative-position classification.
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