ℒ-Invariants, p-Adic Heights, and Factorization of p-Adic L-Functions

Author:

Büyükboduk Kâzım1,Sakamoto Ryotaro2

Affiliation:

1. UCD School of Mathematics and Statistics, University College Dublin, Ireland

2. RIKEN Center for Advanced Intelligence Project (AIP), 1-4-1 Nihonbashi, Chuo-ku, Tokyo 103-0027, Japan

Abstract

Abstract We continue with our study of the noncritical exceptional zeros of Katz’ $p$-adic $L$-functions attached to a CM field $K$, following two threads. In the 1st thread, we redefine our (group-ring-valued) ${\mathcal {L}}$-invariant associated with each ${\mathbb {Z}}_p$-extension $K_\Gamma $ of $K$ in terms of $p$-adic height pairings and interpolate them as $K_\Gamma $ varies to a universal (multivariate) group-ring-valued ${\mathcal {L}}$-invariant. In the 2nd thread, we use our results to study the exceptional zeros of the Rankin–Selberg $p$-adic $L$-functions at noncritical specializations of the self-products of nearly ordinary CM families, via the factorization statements we establish. The factorization theorems are extensions of the results due to Greenberg and Palvannan.

Publisher

Oxford University Press (OUP)

Subject

General Mathematics

Reference35 articles.

1. Fonctions Zeta p-Adiques d’une Classe de Rayon des Corps de Nombres Totalement Réels;Barsky,1978

2. On Extra Zeros of p-Adic L-Functions: The Crystalline Case;Benois,2014

3. On the exceptional zeros of $p$-non-ordinary $p$-adic $L$-functions and a conjecture of Perrin–Riou;Benois,2020

4. Geometry of the eigencurve at CM points and trivial zeros of Katz $p$-adic $L$-functions;Betina,2019

5. Height pairings, exceptional zeros and Rubin’s formula: the multiplicative group;Büyükboduk;Comment. Math. Helv.,2012

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