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$\mathbb{Z}^2$-algebras as noncommutative blow-ups

Published 2 Jan 2017 in math.AG | (1701.00413v2)

Abstract: The goal of this note is to first prove that for a well behaved $\mathbb{Z}2$-algebra $R$, the category $QGr(R) := Gr(R)/Tors(R)$ is equivalent to $QGr(R_\Delta)$ where $R_\Delta$ is a diagonal-like sub-$\mathbb{Z}$-algebra of $R$. Afterwards we use this result to prove that the $\mathbb{Z}2$-algebras as introduced in [ArXiV:1607.08383] are QGr-equivalent to a diagonal-like sub-$\mathbb{Z}$-algebra which is a simultaneous noncommutative blow-up of a quadratic and a cubic Sklyanin algebra. As such we link the noncommutative birational transformation and the associated $\mathbb{Z}2$-algebras as appearing in the work of Van den Bergh and Presotto with the noncommutative blowups appearing in the work of Rogalski, Sierra and Stafford.

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