Difference between revisions of "M(3^n,1,2)"

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Latest revision as of 14:22, 8 September 2018

M(3^n,1,2) - [math]kD_{2.3^n}[/math]
M(5,1,2)quiver.png
Representative: [math]kD_{2.3^n}[/math]
Defect groups: [math]C_{3^n}[/math]
Inertial quotients: [math]C_2[/math]
[math]k(B)=[/math] [math]\frac{3^n+3}{2}[/math]
[math]l(B)=[/math] 2
[math]{\rm mf}_k(B)=[/math] 1
[math]{\rm Pic}_k(B)=[/math]
Cartan matrix: [math]\left( \begin{array}{cc} \frac{3^n+1}{2} & \frac{3^n-1}{2} \\ \frac{3^n-1}{2} & \frac{3^n+1}{2} \\ \end{array} \right)[/math]
Defect group Morita invariant? Yes
Inertial quotient Morita invariant? Yes
[math]\mathcal{O}[/math]-Morita classes known? Yes
[math]\mathcal{O}[/math]-Morita classes: [math]\mathcal{O} D_{18}[/math]
Decomposition matrices: [math]\left( \begin{array}{cc} 1 & 0 \\ 0 & 1 \\ 1 & 1 \\ \vdots & \vdots \\ 1 & 1 \\ 1 & 1 \\ \end{array}\right)[/math]
[math]{\rm mf}_\mathcal{O}(B)=[/math] 1
[math]{\rm Pic}_{\mathcal{O}}(B)=[/math]
[math]PI(B)=[/math] {{{PIgroup}}}
Source algebras known? Yes
Source algebra reps: [math]kD_{2.3^n}[/math]
[math]k[/math]-derived equiv. classes known? Yes
[math]k[/math]-derived equivalent to: M(3^n,1,3)
[math]\mathcal{O}[/math]-derived equiv. classes known? Yes
[math]p'[/math]-index covering blocks: {{{coveringblocks}}}
[math]p'[/math]-index covered blocks: {{{coveredblocks}}}
Index [math]p[/math] covering blocks: {{{pcoveringblocks}}}

Basic algebra

Quiver: a:<1,2>, b:<2,1>

Relations w.r.t. [math]k[/math]: [math]a(ba)^{(3^n-1)/2}=b(ab)^{(3^n-1)/2}=0[/math]

Other notatable representatives

Covering blocks and covered blocks

Projective indecomposable modules

Labelling the simple [math]B[/math]-modules by [math]S_1, S_2[/math], the projective indecomposable modules have Loewy structure as follows:

[math]\begin{array}{cc} \begin{array}{c} S_1 \\ S_2 \\ S_1 \\ S_2 \\ \vdots \\ S_1 \\ S_2 \\ S_1 \\ \end{array}, & \begin{array}{c} S_2 \\ S_1 \\ S_2 \\ S_1 \\ \vdots \\ S_2 \\ S_1 \\ S_2 \\ \end{array} \end{array} [/math]


Irreducible characters

All irreducible characters have height zero.

Back to [math]C_{3^n}[/math]