English

F-sets and finite automata

Number Theory 2019-07-10 v2 Logic

Abstract

The classical notion of a k-automatic subset of the natural numbers is here extended to that of an F-automatic subset of an arbitrary finitely generated abelian group Γ\Gamma equipped with an arbitrary endomorphism F. This is applied to the isotrivial positive characteristic Mordell-Lang context where F is the Frobenius action on a commutative algebraic group G over a finite field, and Γ\Gamma is a finitely generated F-invariant subgroup of G. It is shown that the F-subsets of Γ\Gamma introduced by the second author and Scanlon are F-automatic. It follows that when G is semiabelian and X is a closed subvariety then X intersect Γ\Gamma is F-automatic. Derksen's notion of a k-normal subset of the natural numbers is also here extended to the above abstract setting, and it is shown that F-subsets are F-normal. In particular, the X intersect Γ\Gamma appearing in the Mordell-Lang problem are F-normal. This generalises Derksen's Skolem-Mahler-Lech theorem to the Mordell-Lang context.

Keywords

Cite

@article{arxiv.1712.03800,
  title  = {F-sets and finite automata},
  author = {Jason Bell and Rahim Moosa},
  journal= {arXiv preprint arXiv:1712.03800},
  year   = {2019}
}

Comments

The final section is revised following an error discovered by Christopher Hawthorne; it is no longer claimed that an F-normal subset has a finite symmetric difference with an F-subset. The main theorems of the paper remain unchanged

R2 v1 2026-06-22T23:14:14.731Z