GUTs and Exceptional Branes in F-theory - I
Abstract
Motivated by potential phenomenological applications, we develop the necessary tools for building GUT models in F-theory. This approach is quite flexible because the local geometrical properties of singularities in F-theory compactifications encode the physical content of the theory. In particular, we show how geometry determines the gauge group, matter content and Yukawa couplings of a given model. It turns out that these features are beautifully captured by a four-dimensional topologically twisted N=4 theory which has been coupled to a surface defect theory on which chiral matter can propagate. From the vantagepoint of the four-dimensional topological theory, these defects are surface operators. Specific intersection points of these defects lead to Yukawa couplings. We also find that the unfolding of the singularity in the F-theory geometry precisely matches to properties of the topological theory with a defect.
Keywords
Cite
@article{arxiv.0802.3391,
title = {GUTs and Exceptional Branes in F-theory - I},
author = {Chris Beasley and Jonathan J. Heckman and Cumrun Vafa},
journal= {arXiv preprint arXiv:0802.3391},
year = {2010}
}
Comments
v2: 121 pages, 5 figures, reference and clarification added