English

On infinitesimal deformations of singular varieties II

Algebraic Geometry 2025-12-16 v1

Abstract

The deformation theory of affine cones over polarized projective varieties, initiated by Pinkham and further developed by Schlessinger and Wahl, is central to the study of singularities and graded deformation functors. For a projective variety YY with ample line bundle L\mathcal L, the affine cone C(Y)C(Y) carries a natural Z\mathbb Z-grading, and Pinkham's classical result identifies the graded pieces of its first-order deformation space: T1(C(Y))mH1 ⁣(Y,TYLm). T^{1}(C(Y))_m \,\cong\, H^{1}\!\left(Y,\,T_Y \otimes \mathcal L^{\otimes m}\right). This expresses that deformations of C(Y)C(Y) come from weighted deformations of (Y,L)(Y,\mathcal L), with negative weights corresponding to smoothings and nonnegative weights to embedded deformations. % We give a streamlined proof of this isomorphism for possibly singular YY, using reflexive differentials and Gm\mathbb G_m-equivariant deformations of the punctured cone. We then compute graded deformation spaces for several examples, illustrating phenomena from smoothability to rigidity. As an application, we obtain a practical rigidity criterion: if H1(Y,TYLm)=0 for all mZ, H^1(Y,\,T_Y \otimes \mathcal L^{\otimes m})=0 \text{ for all } m\in\mathbb Z, then C(Y)C(Y) is rigid. We exhibit explicit polarized varieties satisfying these vanishings, producing new rigid affine cones.

Keywords

Cite

@article{arxiv.2512.13211,
  title  = {On infinitesimal deformations of singular varieties II},
  author = {Mounir Nisse},
  journal= {arXiv preprint arXiv:2512.13211},
  year   = {2025}
}

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36 pages