On Singular Fibres in F-Theory
arXiv:1301.5814 · doi:10.1007/JHEP07(2013)031
Abstract
In this paper, we propose a connection between the field theory local model (Katz-Vafa field theory) and the type of singular fibre in flat crepant resolutions of elliptic Calabi-Yau fourfolds, a class of fourfolds considered by Esole and Yau. We review the analysis of degenerate fibres for models with gauge groups SU(5) and SO(10) in detail, and observe that the naively expected fibre type is realized if and only if the Higgs vev in the field theory local model is unramified. To test this idea, we implement a linear (unramified) Higgs vev for the `E6' Yukawa point in a model with gauge group SU(5) and verify that this indeed leads to a fibre of Kodaira type IV*. Based on this observation, we argue i) that the singular fibre types appearing in the fourfolds studied by Esole-Yau are not puzzling at all, (so that this class of fourfolds does not have to be excluded from the candidate of input data of some yet-unknown formulation of F-theory) and ii) that such fourfold geometries also contain more information than just the eigenvalues of the Higgs field vev configuration in the field theory local models.
35 pages, 10 figures, v2: fixed typos, added clarifying remarks
References in corpus (7)
- T-Branes and Monodromy
- New Aspects of Heterotic--F Theory Duality
- Monodromies, Fluxes, and Compact Three-Generation F-theory GUTs
- U(1) symmetries in F-theory GUTs with multiple sections
- The Tate Form on Steroids: Resolution and Higher Codimension Fibers
- Right-handed Neutrinos in F-theory Compactifications
- Toric Construction of Global F-Theory GUTs
Cited by in corpus (11)
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- T-Branes and Geometry
- Box Graphs and Singular Fibers
- Geometric constraints in dual F-theory and heterotic string compactifications
- Up-type quark masses in SU(5) F-theory models
- Phases, Flops and F-theory: SU(5) Gauge Theories
- Tate's Algorithm for F-theory GUTs with two U(1)s
- Geometric engineering on flops of length two
- Yukawa couplings in F-theory as D-brane instanton effects
- On the Standard Model Group in F-theory
- Yukawa Textures From Singular Spectral Data