
arXiv: 1912.00901
handle: 11572/263229 , 11568/1042702
$\DeclareMathOperator{\Aut}{Aut}$Let $p, q$ be distinct primes, with $p > 2$. We classify the Hopf-Galois structures on Galois extensions of degree $p^{2} q$, such that the Sylow $p$-subgroups of the Galois group are cyclic. This we do, according to Greither and Pareigis, and Byott, by classifying the regular subgroups of the holomorphs of the groups $(G, \cdot)$ of order $p^{2} q$, in the case when the Sylow $p$-subgroups of $G$ are cyclic. This is equivalent to classifying the skew braces $(G, \cdot, \circ)$. Furthermore, we prove that if $G$ and $Γ$ are groups of order $p^{2} q$ with non-isomorphic Sylow $p$-subgroups, then there are no regular subgroups of the holomorph of $G$ which are isomorphic to $Γ$. Equivalently, a Galois extension with Galois group $Γ$ has no Hopf-Galois structures of type $G$. Our method relies on the alternate brace operation $\circ$ on $G$, which we use mainly indirectly, that is, in terms of the functions $γ: G \to \Aut(G)$ defined by $g \mapsto (x \mapsto (x \circ g) \cdot g^{-1})$. These functions are in one-to-one correspondence with the regular subgroups of the holomorph of $G$, and are characterised by the functional equation $γ(g^{γ(h)} \cdot h) = γ(g) γ(h)$, for $g, h \in G$. We develop methods to deal with these functions, with the aim of making their enumeration easier, and more conceptual.
43 pages
Hopf algebras and their applications, Mathematics - Number Theory, Separable extensions, Galois theory, Mathematics - Rings and Algebras, Group Theory (math.GR), skew braces, Automorphisms of abstract finite groups, regular subgroups, 12F10 16W30 20B35 20D45, braces, Subgroups of symmetric groups, Hopf-Galois structures, Rings and Algebras (math.RA), holomorph, FOS: Mathematics, Number Theory (math.NT), Braces; Holomorph; Hopf-Galois extensions; Hopf-Galois structures; Regular subgroups; Skew braces, Mathematics - Group Theory
Hopf algebras and their applications, Mathematics - Number Theory, Separable extensions, Galois theory, Mathematics - Rings and Algebras, Group Theory (math.GR), skew braces, Automorphisms of abstract finite groups, regular subgroups, 12F10 16W30 20B35 20D45, braces, Subgroups of symmetric groups, Hopf-Galois structures, Rings and Algebras (math.RA), holomorph, FOS: Mathematics, Number Theory (math.NT), Braces; Holomorph; Hopf-Galois extensions; Hopf-Galois structures; Regular subgroups; Skew braces, Mathematics - Group Theory
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