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Reheating in No-Scale Models of Inflation

Ignatios Antoniadis, John Ellis, Dimitri V. Nanopoulos, Keith A. Olive, Sarunas Verner

hep-pharXiv:2606.31975

Abstract

Analogously to the suppression of inflaton decays into conformally-coupled scalar fields in the original Starobinsky R + R2 model of inflation, inflaton decays to Standard Model fields are also suppressed in minimal no-scale models of inflation with field space curvature R = 2/3. We study how this suppression can be avoided in generalized no-scale inflationary models. These include models in which the field space curvature R = 2/(3α) with α 1 as exemplified by models derived from string theory, as well as models with non-minimal gauge kinetic terms and anomaly-induced couplings. We analyze direct and anomaly-induced inflaton couplings to gauge bosons and gauginos and demonstrate the Kähler-frame invariance of the physical gauge coupling. We determine the resulting reheating temperatures and the corresponding predictions in the (ns,r) plane. Finally, we consider an R3 deformation of Starobinsky supergravity, which modifies the inflaton and stabilizer sectors but does not, by itself, generate new tree-level inflaton couplings to visible matter fields.

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