F-theory approach to particle physics

F-theory approach to particle physics

by Jonathan Jacob Heckman

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In this thesis we develop an approach to particle physics based on Grand Unified Theories (GUTs) in F-theory. This leads to a specific class of geometric ingredients which are necessary in order to realize the matter content, and interaction terms of the Minimal Supersymmetric Standard Model. Imposing the condition that gravity can in principle decouple endows the models with surprising predictive power. We study gauge mediated supersymmetry breaking in F-theory GUTs, and find that the soft scalar masses contain an intrinsically stringy ingredient which at lower energies leads to observable consequences. The flavor physics of quarks and leptons are in accord with experiment, and lead to predictions in the neutrino sector. We find that the model non-trivially satisfies many cosmological constraints. Cosmology also provides a window into the stringy deformation of the supersymmetry breaking sector. Finally, we also study potential collider signatures present at the CERN Large Hadron Collider.

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