Flavored axion-monodromy inflation
arXiv:1509.08013 · doi:10.1103/PhysRevD.92.116011
Abstract
The hierarchy of fermion masses in the standard model may arise via the breaking of discrete gauge symmetries. The renormalizable interactions of the flavor-symmetry-breaking potential can have accidental global symmetries that are spontaneously broken, leading to pseudo-goldstone bosons that may drive inflation. We consider two-field, axion-monodromy inflation models in which the inflaton is identified with a linear combination of pseudo-goldstone bosons of the flavor sector. We show that the resulting models are nontrivially constrained by current cosmological data as well as the requirements of viable flavor model building.
19 pages LaTeX, 2 pdf figures
References in corpus (8)
- Trajectories with suppressed tensor-to-scalar ratio in Aligned Natural Inflation
- Flavon Inflation
- Helical Phase Inflation
- Spiral Inflation
- Spiral Inflation with Coleman-Weinberg Potential
- Dante's Waterfall
- A Minimal Sub-Planckian Axion Inflation Model with Large Tensor-to-Scalar Ratio
- Signatures of Planck Corrections in a Spiralling Axion Inflation Model