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Noncommutative complex geometry of the quantum projective space (1105.0456v1)
Published 2 May 2011 in math.QA
Abstract: We define holomorphic structures on canonical line bundles of the quantum projective space $\qp{\ell}_q$ and identify their space of holomorphic sections. This determines the quantum homogeneous coordinate ring of the quantum projective space. We show that the fundamental class of $\qp{\ell}_q$ is naturally presented by a twisted positive Hochschild cocycle. Finally, we verify the main statements of Riemann-Roch formula and Serre duality for $\qp{1}_q$ and $\qp{2}_q$.