English

$\mathbb{P}^1$-fibrations in F-theory and String Dualities

High Energy Physics - Theory 2021-09-24 v1

Abstract

In this work we study F-theory compactifications on elliptically fibered Calabi-Yau n-folds which have P1\mathbb{P}^1-fibered base manifolds. Such geometries, which we study in both 4- and 6-dimensions, are both ubiquitous within the set of Calabi-Yau manifolds and play a crucial role in heterotic/F-theory duality. We discuss the most general formulation of P1\mathbb{P}^1-bundles of this type, as well as fibrations which degenerate at higher codimension loci. In the course of this study, we find a number of new phenomena. For example, in both 4- and 6-dimensions we find transitions whereby the base of a P1\mathbb{P}^1-bundle can change nature, or "jump", at certain loci in complex structure moduli space. We discuss the implications of this jumping for the associated heterotic duals. We argue that P1\mathbb{P}^1-bundles with only rational sections lead to heterotic duals where the Calabi-Yau manifold is elliptically fibered over the section of the P1\mathbb{P}^1- bundle, and not its base. As expected, we see that degenerations of the P1\mathbb{P}^1-fibration of the F-theory base correspond to 5-branes in the dual heterotic physics, with the exception of cases in which the fiber degenerations exhibit monodromy. Along the way, we discuss a set of useful formulae and tools for describing F-theory compactifications on this class of Calabi-Yau manifolds.

Keywords

Cite

@article{arxiv.2109.11534,
  title  = {$\mathbb{P}^1$-fibrations in F-theory and String Dualities},
  author = {Lara B. Anderson and James Gray and Mohsen Karkheiran and Paul-Konstantin Oehlmann and Nikhil Raghuram},
  journal= {arXiv preprint arXiv:2109.11534},
  year   = {2021}
}

Comments

63 pages, 6 figures

R2 v1 2026-06-24T06:16:15.855Z