Three-Family Particle Physics Models from Global F-theory Compactifications
Abstract
We construct four-dimensional, globally consistent F-theory models with three chiral generations, whose gauge group and matter representations coincide with those of the Minimal Supersymmetric Standard Model, the Pati-Salam Model and the Trinification Model. These models result from compactification on toric hypersurface fibrations with the choice of base . We observe that the F-theory conditions on the -flux restrict the number of families to be at least three. We comment on the phenomenology of the models, and for Pati-Salam and Trinification models discuss the Higgsing to the Standard Model. A central point of this work is the construction of globally consistent -flux. For this purpose we compute the vertical cohomology in each case and solve the conditions imposed by matching the M- and F-theoretical 3D Chern-Simons terms. We explicitly check that the expressions found for the -flux allow for a cancelation of D3-brane tadpoles. We also use the integrality of 3D Chern-Simons terms to ensure that our -flux solutions are adequately quantized.
Keywords
Cite
@article{arxiv.1503.02068,
title = {Three-Family Particle Physics Models from Global F-theory Compactifications},
author = {Mirjam Cvetic and Denis Klevers and Damián Kaloni Mayorga Peña and Paul-Konstantin Oehlmann and Jonas Reuter},
journal= {arXiv preprint arXiv:1503.02068},
year = {2015}
}
Comments
45 pages, 6 figures, 13 tables