Observable r, gravitino dark matter, and non-thermal leptogenesis in no-scale supergravity

A bstract We analyse the shifted hybrid inflation in a no-scale supersymmetric SU(5) GUT model 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 yields a flat potent...

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Veröffentlicht in:The journal of high energy physics 2023-05, Vol.2023 (5), p.11-21, Article 11
Hauptverfasser: Ahmed, Waqas, Moosa, Muhammad, Munir, Shoaib, Zubair, Umer
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Sprache:eng
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Zusammenfassung:A bstract We analyse the shifted hybrid inflation in a no-scale supersymmetric SU(5) GUT model 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 yields a flat potential with no anti-de Sitter vacua, resolving the η problem. The model predicts a scalar spectral tilt n s compatible with the most recent measurements by the Planck satellite, while also accommodating large values of the tensor-to-scalar ratio r (~ 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 employed, wherein the reheating temperature T r lies in the (2 × 10 6 ≲ T r ≲ 2 × 10 9 ) GeV range, and at the same time realizing gravitino as a viable dark matter (DM) candidate.
ISSN:1029-8479
1029-8479
DOI:10.1007/JHEP05(2023)011