On Non Generic Finite Subgroups Of Exceptional Algebraic Groups

Download On Non Generic Finite Subgroups Of Exceptional Algebraic Groups PDF/ePub or read online books in Mobi eBooks. Click Download or Read Online button to get On Non Generic Finite Subgroups Of Exceptional Algebraic Groups book now. This website allows unlimited access to, at the time of writing, more than 1.5 million titles, including hundreds of thousands of titles in various foreign languages.
On Non-Generic Finite Subgroups of Exceptional Algebraic Groups

Author: Alastair J. Litterick
language: en
Publisher: American Mathematical Soc.
Release Date: 2018-05-29
The study of finite subgroups of a simple algebraic group $G$ reduces in a sense to those which are almost simple. If an almost simple subgroup of $G$ has a socle which is not isomorphic to a group of Lie type in the underlying characteristic of $G$, then the subgroup is called non-generic. This paper considers non-generic subgroups of simple algebraic groups of exceptional type in arbitrary characteristic.
The Irreducible Subgroups of Exceptional Algebraic Groups

Author: Adam R. Thomas
language: en
Publisher: American Mathematical Soc.
Release Date: 2021-06-18
This paper is a contribution to the study of the subgroup structure of excep-tional algebraic groups over algebraically closed fields of arbitrary characteristic. Following Serre, a closed subgroup of a semisimple algebraic group G is called irreducible if it lies in no proper parabolic subgroup of G. In this paper we com-plete the classification of irreducible connected subgroups of exceptional algebraic groups, providing an explicit set of representatives for the conjugacy classes of such subgroups. Many consequences of this classification are also given. These include results concerning the representations of such subgroups on various G-modules: for example, the conjugacy classes of irreducible connected subgroups are determined by their composition factors on the adjoint module of G, with one exception. A result of Liebeck and Testerman shows that each irreducible connected sub-group X of G has only finitely many overgroups and hence the overgroups of X form a lattice. We provide tables that give representatives of each conjugacy class of connected overgroups within this lattice structure. We use this to prove results concerning the subgroup structure of G: for example, when the characteristic is 2, there exists a maximal connected subgroup of G containing a conjugate of every irreducible subgroup A1 of G.