Symbols for toric Eisenstein cocycles and arithmetic applications
Abstract
Using a complex parameterizing rational spherical chains, we construct explicit cocycles for valued in the motivic cohomology of (open subsets of) the algebraic -torus . The resulting cocycles directly generalize the work of Sharifi and Venkatesh from the case \cite{SV}. Even in this special case, our systematic use of pushforwards allows us to avoid the use of their ``connecting sequences,'' and allows us to refine the construction and Hecke properties of the Sharifi map to the maximal expected statements, while inverting only the prime . For general , the regulator of our cocycle is related by convex conical duality to cocycles constructed from Shintani cones. This affords a systematic approach to -adic -functions for totally real fields without need for auxiliary data or logarithm sheaf coefficients, including a distribution-valued -cocycle specializing in a simple way to all such -adic -functions. It moreover provides a direct conceptual link between polylogarithmic constructions of Eisenstein classes (e.g., in \cite{BKL}), and those constructed using Shintani cones (e.g., in \cite{CDG}). We also show how our formalism gives an alternate proof of the exceptional divisibilities of the Deligne-Ribet -adic -function in almost all cases.
Cite
@article{arxiv.2402.00294,
title = {Symbols for toric Eisenstein cocycles and arithmetic applications},
author = {Peter Xu},
journal= {arXiv preprint arXiv:2402.00294},
year = {2025}
}
Comments
rewrite to focus less on the formalism, flesh out more the applications. comments welcome!