paper

Accessing non-abelian quotients of the Grothendieck-Teichmueller group via elementary tools

arXiv:2405.11725

Abstract

Many challenging questions about the Grothendieck-Teichmueller group, , are motivated by the fact that this group receives the injective homomorphism (called the Ihara embedding) from the absolute Galois group, , of rational numbers. Although the question about the surjectivity of the Ihara embedding is a very challenging problem, in this paper, we construct a family of finite non-abelian quotients of that receive surjective homomorphisms from . We also assemble these finite quotients into an infinite (non-abelian) profinite quotient of . We prove that the natural homomorphism from to the resulting profinite group is also surjective. We give an explicit description of this profinite group. To achieve these goals, we used the groupoid of -shadows for the gentle version of the Grothendieck-Teichmueller group. This groupoid was introduced in the recent paper by the second author and J. Guynee and the set of objects of is a poset of certain finite index normal subgroups of the Artin braid group on 3 strands. We introduce a sub-poset of related to the family of dihedral groups and call it the dihedral poset. We show that each element of is the only object of its connected component in . Using the surjectivity of the cyclotomic character, we prove that, if the order of the dihedral group corresponding to is a power of 2, then the natural homomorphism from to the finite group is surjective. We introduce the Lochak-Schneps conditions on morphisms of and prove that each morphism of with the target in satisfies the Lochak-Schneps conditions. Finally, we conjecture that the natural homomorphism from to the finite group is surjective for every object of the dihedral poset.

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