English

Observable r, Gravitino Dark Matter, and Non-thermal Leptogenesis in No-Scale Supergravity

High Energy Physics - Phenomenology 2023-05-12 v2 General Relativity and Quantum Cosmology High Energy Physics - Theory

Abstract

We analyse the shifted hybrid inflation in a no-scale SU(5) model with supersymmetry, which naturally circumvents the monopole problem. The no-scale framework is derivable as the effective field theory of the supersymmetric (SUSY) compactifications of string theory, and it yields a flat potential with no anti-de Sitter vacua, resolving the η\eta problem. The model predicts a scalar spectral tilt nsn_s compatible with the most recent measurements by the Planck satellite, while also accommodating observable values of the tensor-to-scalar ratio rr (0.0015\sim 0.0015), potentially measurable by the near-future experiments. Moreover, the proton decay lifetime in the presence of the dimension-5 operators is found to lie above the current limit imposed by the Super-Kamiokande experiment. A realistic scenario of reheating and non-thermal leptogenesis is invoked, wherein the reheating temperature TrT_r lies in the {2×106Tr2×109}\{2 \times 10^6 \lesssim T_r \lesssim 2 \times 10^9\} GeV range, and at the same time the gravitino makes a viable dark matter (DM) candidate.

Keywords

Cite

@article{arxiv.2208.11888,
  title  = {Observable r, Gravitino Dark Matter, and Non-thermal Leptogenesis in No-Scale Supergravity},
  author = {Waqas Ahmed and Muhammad Moosa and Shoaib Munir and Umer Zubair},
  journal= {arXiv preprint arXiv:2208.11888},
  year   = {2023}
}

Comments

25 pages,6 figures