English

Quantum Smearing in Hybrid Inflation with Chaotic Potentials

High Energy Physics - Phenomenology 2018-07-03 v3

Abstract

We study the impact of one-loop radiative corrections in a non-supersymmetric model of hybrid inflation with chaotic (polynomial-like) potential, V0+λpϕpV_0 + \lambda_p \phi^p. These corrections can arise from the possible couplings of inflaton with other fields which may play active role in the reheating process. The tree-level predictions of these models are shown to lie outside of the Planck's latest bounds on the scalar spectral index nsn_s and the tensor to scalar ratio rr. However, the radiatively corrected version of these models, V0+λpϕp+Aϕ4lnϕ V_0 + \lambda_p \phi^p + A \phi^4 \ln \phi, is fully consistent with the Planck's data. More specifically, fermionic radiative correction (A<0A<0) reduces the tensor to scalar ratio significantly and a red-tilted spectral index ns<1n_s<1, consistent with Planck's data, is obtained even for sub-Planckian field-values.

Keywords

Cite

@article{arxiv.1501.00173,
  title  = {Quantum Smearing in Hybrid Inflation with Chaotic Potentials},
  author = {Waqas Ahmed and Ommair Ishaque and Mansoor Ur Rehman},
  journal= {arXiv preprint arXiv:1501.00173},
  year   = {2018}
}

Comments

14 pages, 25 figures (typos fixed)