Provides an explicit power-saving asymptotic for counting points by pullback height under morphisms between projective spaces over number fields.
Effective Hilbert's Irreducibility Theorem for global fields
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abstract
We prove an effective form of Hilbert's irreducibility theorem for polynomials over a global field $K$. More precisely, we give effective bounds for the number of specializations $t\in \mathcal{O}_K$ that do not preserve the irreducibility or the Galois group of a given irreducible polynomial $F(T,Y)\in K[T,Y]$. The bounds are explicit in the height and degree of the polynomial $F(T,Y)$, and are optimal in terms of the size of the parameter $t\in \mathcal{O}_K$. Our proofs deal with the function field and number field cases in a unified way.
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math.NT 1years
2024 1verdicts
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Heights and morphisms in number fields
Provides an explicit power-saving asymptotic for counting points by pullback height under morphisms between projective spaces over number fields.