English

Essential dimension and pro-finite group schemes

Algebraic Geometry 2022-09-19 v2 Number Theory

Abstract

A. Vistoli observed that, if Grothendieck's section conjecture is true and XX is a smooth hyperbolic curve over a field finitely generated over Q\mathbb{Q}, then π1(X)\underline{\pi}_{1}(X) should somehow have essential dimension 11. We prove that an infinite, pro-finite \'etale group scheme always has infinite essential dimension. We introduce a variant of essential dimension, the fce dimension fcedG\operatorname{fced} G of a pro-finite group scheme GG, which naturally coincides with edG\operatorname{ed} G if GG is finite but has a better behaviour in the pro-finite case. Grothendieck's section conjecture implies fcedπ1(X)=dimX=1\operatorname{fced}\underline{\pi}_{1}(X)=\dim X=1 for XX as above. We prove that, if AA is an abelian variety over a field finitely generated over Q\mathbb{Q}, then fcedπ1(A)=fcedTA=dimA\operatorname{fced}\underline{\pi}_{1}(A)=\operatorname{fced} TA=\dim A.

Keywords

Cite

@article{arxiv.1904.00789,
  title  = {Essential dimension and pro-finite group schemes},
  author = {Giulio Bresciani},
  journal= {arXiv preprint arXiv:1904.00789},
  year   = {2022}
}

Comments

Simplified proofs and stronger results in the new version

R2 v1 2026-06-23T08:25:17.503Z