English

A Formalization of Divided Powers in Lean

Logic in Computer Science 2025-07-09 v1 Commutative Algebra

Abstract

Given an ideal II in a commutative ring AA, a divided power structure on II is a collection of maps {γn ⁣:IA}nN\{\gamma_n \colon I \to A\}_{n \in \mathbb{N}}, subject to axioms that imply that it behaves like the family {xxnn!}nN\{x \mapsto \frac{x^n}{n!}\}_{n \in \mathbb{N}}, but which can be defined even when division by factorials is not possible in AA. Divided power structures have important applications in diverse areas of mathematics, including algebraic topology, number theory and algebraic geometry. In this article we describe a formalization in Lean 4 of the basic theory of divided power structures, including divided power morphisms and sub-divided power ideals, and we provide several fundamental constructions, in particular quotients and sums. This constitutes the first formalization of this theory in any theorem prover. As a prerequisite of general interest, we expand the formalized theory of multivariate power series rings, endowing them with a topology and defining evaluation and substitution of power series.

Keywords

Cite

@article{arxiv.2507.05327,
  title  = {A Formalization of Divided Powers in Lean},
  author = {Antoine Chambert-Loir and María Inés de Frutos-Fernández},
  journal= {arXiv preprint arXiv:2507.05327},
  year   = {2025}
}

Comments

16th International Conference on Interactive Theorem Proving (ITP '25), 2025, Reykjavik, Iceland

R2 v1 2026-07-01T03:50:06.532Z