English

K3 carpets on minimal rational surfaces and their smoothings

Algebraic Geometry 2021-02-24 v3

Abstract

In this article, we study K3 double structures on minimal rational surfaces YY. The results show there are infinitely many non-split abstract K3 double structures on Y=FeY = \mathbb{F}_e parametrized by P1\mathbb P^1, countably many of which are projective. For Y=P2Y = \mathbb{P}^2 there exist a unique non-split abstract K3 double structure which is non-projective (see Dr\'ezet's article in arXiv:2004.04921). We show that all projective K3 carpets can be smoothed to a smooth K3 surface. One of the byproducts of the proof shows that unless YY is embedded as a variety of minimal degree, there are infinitely many embedded K3 carpet structures on YY. Moreover, we show any embedded projective K3 carpet on Fe\mathbb F_e with e<3e<3 arises as a flat limit of embeddings degenerating to 2:12:1 morphism. The rest do not, but we still prove the smoothing result. We further show that the Hilbert points corresponding to the projective K3 carpets supported on Fe\mathbb{F}_e, embedded by a complete linear series are smooth points if and only if 0e20\leq e\leq 2. In contrast, Hilbert points corresponding to projective K3 carpets supported on P2\mathbb{P}^2 and embedded by a complete linear series are always smooth. The results in a recent paper of Bangere, Gallego, and Gonz\'alez show that there are no higher dimensional analogues of the results in this article.

Keywords

Cite

@article{arxiv.2006.16448,
  title  = {K3 carpets on minimal rational surfaces and their smoothings},
  author = {Purnaprajna Bangere and Jayan Mukherjee and Debaditya Raychaudhury},
  journal= {arXiv preprint arXiv:2006.16448},
  year   = {2021}
}

Comments

Final version, accepted for publication in International Journal of Mathematics