New Inflation in Supersymmetric SU(5) and Flipped SU(5) GUT Models
Abstract
We study the feasibility of realizing supersymmetric new inflation model, introduced by Senoguz and Shafi in [1], for and flipped models of grand unified theories (GUTs). This realization requires an additional symmetry for its successful implementation. The standard model (SM) gauge singlet scalar components of and GUT Higgs superfields are respectively employed to realize successful inflation in and flipped models. The predictions of the various inflationary observables lie within the recent Planck bounds on the scalar spectral index, , for in model and for in flipped model. In particular, the tensor to scalar ratio and the running of spectral index are negligibly small and lie in the range, and , for realistic values of . In numerical estimation of the various predictions, we fix the gauge symmetry breaking scale, , around GeV. The issue of gauge coupling unification in -symmetric is evaded by adding vectorlike families with mass splitting within their multiplets. The dilution of monopoles beyond the observable limit is naturally achieved in the breaking of gauge symmetry during inflation. A realistic scenario of reheating with non-thermal leptogenesis is employed for both models. The predicted range of reheat temperature within Planck bounds, GeV, is safe from the gravitino problem for the gravitino mass, TeV. Finally, the symmetry is also observed to play a crucial role in suppressing the various fast proton decay operators.
Keywords
Cite
@article{arxiv.1804.07619,
title = {New Inflation in Supersymmetric SU(5) and Flipped SU(5) GUT Models},
author = {Mansoor Ur Rehman and Mian Muhammad Azeem Abid and Amna Ejaz},
journal= {arXiv preprint arXiv:1804.07619},
year = {2020}
}
Comments
24 pages and 8 figures; published revision