English

$\mathcal{L}$-invariants and exceptional zeros of Bianchi modular forms

Number Theory 2020-07-23 v2

Abstract

Let f be a Bianchi modular form, that is, an automorphic form for GL(2) over an imaginary quadratic field F. In this paper, we prove an exceptional zero conjecture in the case where f is new at a prime above p. More precisely, for each prime p\mathfrak{p} of F above p we prove the existence of an L-invariant Lp\mathcal{L}_{\mathfrak{p}}, depending only on p\mathfrak{p} and f, such that when the p-adic L-function of f has an exceptional zero at p\mathfrak{p}, its derivative can be related to the classical L-value multiplied by Lp\mathcal{L}_{\mathfrak{p}}. The proof uses cohomological methods of Darmon and Orton, who proved similar results for GL(2) over the rationals. When p is not split and f is the base-change of a classical modular form F, we relate Lp\mathcal{L}_{\mathfrak{p}} to the L-invariant of F, resolving a conjecture of Trifkovi\'{c} in this case.

Keywords

Cite

@article{arxiv.1707.04049,
  title  = {$\mathcal{L}$-invariants and exceptional zeros of Bianchi modular forms},
  author = {Daniel Barrera Salazar and Chris Williams},
  journal= {arXiv preprint arXiv:1707.04049},
  year   = {2020}
}

Comments

36 Pages; minor updates and corrections. To appear in Transactions of the AMS