Search arXivSearch

arXiv · math/0611704

An Eisenstein--Kronecker Modular Symbol and Beilinson--Kato Distributions

Abstract

We construct an Eisenstein-Kronecker modular symbol with values in a completed bigraded quotient of modular forms by Eisenstein series. Its homogeneous finite-level specializations recover the Borisov-Gunnells symbols. The main theorem identifies its standard distribution, after the explicit transposition, orientation, finite symplectic Fourier, projection, and period normalizations, with Colmez's Eisenstein realization of the standard Busuioc-Park-Patashnick-Stevens Beilinson-Kato distribution. The comparison holds on the full BPPS test-function space, including the zero-torsion degenerations. The cyclic Manin relation is obtained from the Frobenius-Stickelberger identity and the theta heat equation; at level one its coefficient identities generate all linear relations among unordered products of two Eisenstein series whose weights are at least four. We also record compatible real-regulator and Poincare-bundle coefficient realizations with the same Fourier normalization.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Vicenţiu Paşol. 2026-09-09. An Eisenstein--Kronecker Modular Symbol and Beilinson--Kato Distributions. https://arxiv.org/abs/math/0611704

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related papers

On the factorisation of the $p$-adic Rankin-Selberg $L$-function in the supersingular case

Given a cusp form $f$ which is supersingular at a fixed prime $p$ away from the level, and a Coleman family $F$ through one of its $p$-stabilisations, we construct a $2$-variable meromorphic $p$-adic $L$-function for the symmetric square of $F$. We prove that this new $p$-adic $L$-function interpolates values of complex imprimitive symmetric square $L$-functions, for the various specialisations of the family $F$. We use this $p$-adic $L$-function to prove a $p$-adic factorisation formula, expressing the geometric $p$-adic $L$-function attached to the Rankin--Selberg convolution of $f$ with itself as a the product of the $p$-adic symmetric square $L$-function of $f$ and a Kubota-Leopoldt $L$-function. This extends a result of Dasgupta in the ordinary case.

math.NT

Exceptional poles of archimedean Rankin-Selberg L-functions for irreducible generic representations of GL(n,R)

For irreducible generic representations $π_1$ and $π_2$ of $\operatorname{GL}_n(\mathbb R)$, we prove that the notions of exceptional pole of type $1$ and type $2$ coincide at every level. When both representations are in general position, we use this identification to express the Rankin--Selberg $L$-function $L(s,π_1\timesπ_2)$ in terms of the exceptional $L$-factors attached to the irreducible constituents of their derivatives.

math.NT