English

Equivariant ideals of polynomials

Logic in Computer Science 2026-05-21 v3 Formal Languages and Automata Theory Commutative Algebra

Abstract

We study existence and computability of finite bases for ideals of polynomials over infinitely many variables. In our setting, variables come from a countable logical structure A, and embeddings from A to A act on polynomials by renaming variables. First, we give a sufficient and necessary condition for A to guarantee the following generalisation of Hilbert's Basis Theorem: every polynomial ideal which is equivariant, i.e. invariant under renaming of variables, is finitely generated. Second, we develop an extension of classical Buchberger's algorithm to compute a Gr\"obner basis of a given equivariant ideal. This implies decidability of the membership problem for equivariant ideals. Finally, we sketch upon various applications of these results to register automata, Petri nets with data, orbit-finitely generated vector spaces, and orbit-finite systems of linear equations.

Keywords

Cite

@article{arxiv.2402.17604,
  title  = {Equivariant ideals of polynomials},
  author = {Arka Ghosh and Sławomir Lasota},
  journal= {arXiv preprint arXiv:2402.17604},
  year   = {2026}
}
R2 v1 2026-06-28T15:02:06.876Z