English

Four-dimensional black hole entropy from F-theory

High Energy Physics - Theory 2019-04-01 v2

Abstract

We study the central charges and levels of a two-dimensional N=(0,4)N=(0,4) superconformal field theory describing four-dimensional BPS black holes in F-theory. These arise from D3-branes wrapping a curve in the base of an elliptically fibered Calabi-Yau threefold times a circle, and probe a transverse Taub-NUT space. The near horizon geometry of these D3-branes is AdS3×S3/Zm_3 \times \text{S}^3/\mathbb{Z}_m, where mm is the NUT charge. Starting from a six-dimensional supergravity effective action we compute three-dimensional Chern-Simons terms to deduce the central charges and levels. We find that it is crucial to integrate out an infinite tower of massive Kaluza-Klein states on S3/Zm^3/\mathbb{Z}_m to match the expected microscopic results. The induced corrections turn out to contribute at leading order to the central charges and levels, which in turn determine the black hole entropy.

Keywords

Cite

@article{arxiv.1808.05228,
  title  = {Four-dimensional black hole entropy from F-theory},
  author = {Thomas W. Grimm and Huibert het Lam and Kilian Mayer and Stefan Vandoren},
  journal= {arXiv preprint arXiv:1808.05228},
  year   = {2019}
}

Comments

44 pages; v2: minor typos corrected