arXiv:1402.6254·v2·High Energy Physics — Phenomenology
Upper Bound on the Tensor-to-Scalar Ratio in GUT-Scale Supersymmetric Hybrid Inflation
Matthew Civiletti🇺🇸 · Constantinos Pallis🇪🇸 · Qaisar Shafi🇺🇸
Abstract
We explore the upper bound on the tensor-to-scalar ratio in supersymmetric (F-term) hybrid inflation models with the gauge symmetry breaking scale set equal to the value , as dictated by the unification of the MSSM gauge couplings. We employ a unique renormalizable superpotential and a quasi-canonical Kähler potential, and the scalar spectral index is required to lie within the two-sigma interval from the central value found by the Planck satellite. In a sizable region of the parameter space the potential along the inflationary trajectory is a monotonically increasing function of the inflaton, and for this case, , while the spectral index running, , can be as large as . Ignoring higher order terms which ensure the boundedness of the potential for large values of the inflaton, the upper bound on is significantly larger, of order , for subplanckian values of the inflaton, and .
Comments: To appear in PLB