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arXiv · 1611.07880

On the fiber product of Riemann surfaces

Abstract

Let $S_{0}, S_{1}$ and $S_{2}$ be connected Riemann surfaces and let $β_{1}:S_{1} \to S_{0}$ and $β_{2}:S_{2} \to S_{0}$ be surjective holomorphic maps. The associated fiber product $S_{1} \times_{(β_{1},β_{2})} S_{2}$ has the structure of a singular Riemann surface, endowed with a canonical map $β$ to $S_{0}$ satisfying that $β_{j} \circ π_{j}=β$, where $π_{j}$ is coordinate projection onto $S_{j}$. In this paper we provide a Fuchsian description of the fiber product and obtain that if one the maps $β_{j}$ is a regular branched cover, then all its irreducible components are isomorphic. In the case that both $β_{j}$ are of finite degree, we observe that the number of irreducible components is bounded above by the greatest common divisor of the two degrees; we study the irreducibility of the fiber product. In the case that $S_{0}=\widehat{\mathbb C}$, and $S_{1}$ and $S_{2}$ are compact, we define the strong field of moduli of the pair $(S_{1} \times_{(β_{1},β_{2})} S_{2},β)$ and observe that this field coincides with the minimal field containing the fields of moduli of both pairs $(S_{1},β_{1})$ and $(S_{2},β_{2})$. Finally, in the case that the fiber product is a connected Riemann surface, we provide an isogenous decomposition of its Jacobian variety.

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BibTeXRIS

Ruben A. Hidalgo, Sebastian Reyes-Carocca, Angelica Vega. 2018-07-31. On the fiber product of Riemann surfaces. https://arxiv.org/abs/1611.07880

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