English

Computing noncommutative deformations of presheaves and sheaves of modules

Algebraic Geometry 2017-04-19 v7

Abstract

We describe a noncommutative deformation theory for presheaves and sheaves of modules that generalizes the commutative deformation theory of these global algebraic structures, and the noncommutative deformation theory of modules over algebras due to Laudal. In the first part of the paper, we describe a noncommutative deformation functor for presheaves of modules on a small category, and an obstruction theory for this functor in terms of global Hochschild cohomology. An important feature of this obstruction theory is that it can be computed in concrete terms in many interesting cases. In the last part of the paper, we describe noncommutative deformation functors for sheaves and quasi-coherent sheaves of modules on a ringed space (X,A)(X, \mathcal{A}). We show that for any good A\mathcal{A}-affine open cover U\mathsf{U} of XX, the forgetful functor QCoh(A)PreSh(U,A)\mathsf{QCoh}(\mathcal{A}) \to \mathsf{PreSh}(\mathsf{U}, \mathcal{A}) induces an isomorphism of noncommutative deformation functors. \emph{Applications.} We consider noncommutative deformations of quasi-coherent A\mathcal{A}-modules on XX when (X,A)=(X,OX)(X, \mathcal{A}) = (X, \mathcal{O}_X) is a scheme or (X,A)=(X,D)(X, \mathcal{A}) = (X, \mathcal{D}) is a D-scheme in the sense of Beilinson and Bernstein. In these cases, we may use any open affine cover of XX closed under finite intersections to compute noncommutative deformations in concrete terms using presheaf methods. We compute the noncommutative deformations of the left DX\mathcal{D}_X-module OX\mathcal{O}_X when XX is an elliptic curve as an example.

Keywords

Cite

@article{arxiv.math/0405234,
  title  = {Computing noncommutative deformations of presheaves and sheaves of modules},
  author = {Eivind Eriksen},
  journal= {arXiv preprint arXiv:math/0405234},
  year   = {2017}
}

Comments

22 pages, AMS-LaTeX. Some results from earlier versions have been omitted to focus on the main results in the paper