Outer linear group: Difference between revisions

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===In terms of the transpose-inverse map===
===In terms of the transpose-inverse map===


The '''outer linear group''' of degree <math>n</math> over a field <math>k</math> is defined as the [[external semidirect product]] of the [[defining ingredient::general linear group]] <math>GL(n,k)</math> with a [[cyclic group:Z2|cyclic group of order two]], where the non-identity element of the cyclic group acts by the [[defining ingredient::transpose-inverse map]].
The '''outer linear group''' of degree <math>n</math> over a [[commutative unital ring]] <math>R</math> is defined as the [[external semidirect product]] of the [[defining ingredient::general linear group]] <math>GL(n,R)</math> with a [[cyclic group:Z2|cyclic group of order two]], where the non-identity element of the cyclic group acts by the [[defining ingredient::transpose-inverse map]].
 
The definition also makes sense if the field <math>k</math> is replaced by a [[commutative unital ring]] <math>R</math>.


==Particular cases==
==Particular cases==

Latest revision as of 19:51, 7 July 2019

Definition

In terms of the transpose-inverse map

The outer linear group of degree over a commutative unital ring is defined as the external semidirect product of the general linear group with a cyclic group of order two, where the non-identity element of the cyclic group acts by the transpose-inverse map.

Particular cases

Finite fields

Size of field Degree (order of matrices) Common name for the outer linear group Order of group Comment
1 Dihedral group Multiplicative group of field is cyclic of order , outer automorphism acts by inverse map.
2 Direct product of and dihedral group
2 1 Cyclic group:Z2
2 2 Dihedral group:D12 (also, direct product of and supersolvable but not nilpotent.
3 2 Outer linear group:OL(2,3) solvable
4 2 Direct product of A5 and S3
5 2 Outer linear group:OL(2,5)
2 3 Projective general linear group:PGL(2,7)