Inflaton Decay in No-Scale Supergravity and Starobinsky-like Models

Author:

Ema Yohei1,Garcia Marcos A. G.2,Ke Wenqi1,Olive Keith A.1ORCID,Verner Sarunas3

Affiliation:

1. William I. Fine Theoretical Physics Institute, School of Physics and Astronomy, University of Minnesota, Minneapolis, MN 55455, USA

2. Departamento de Física Teórica, Instituto de Física, Universidad Nacional Autónoma de México, Ciudad de México C.P. 04510, Mexico

3. Institute for Fundamental Theory, Physics Department, University of Florida, Gainesville, FL 32611, USA

Abstract

We consider the decay of the inflaton in Starobinsky-like models arising from either an R+R2 theory of gravity or N=1 no-scale supergravity models. If Standard Model matter is simply introduced to the R+R2 theory, the inflaton (which appears when the theory is conformally transformed into the Einstein frame) couples to matter predominantly in Standard Model Higgs kinetic terms. This will typically lead to a reheating temperature of ∼3 × 109 GeV. However, if the Standard Model Higgs is conformally coupled to curvature, the decay rate may be suppressed and vanishes for conformal coupling ξ=1/6. Nevertheless, the inflaton decays through the conformal anomaly, leading to a reheating temperature of the order of 108 GeV. The Starobinsky potential may also arise in no-scale supergravity. In this case, the inflaton decays if there is a direct coupling of the inflaton to matter in the superpotential or to gauge fields through the gauge kinetic function. We also discuss the relation between the theories and demonstrate the correspondence between the no-scale models and the conformally coupled R+R2 theory (with ξ=1/6).

Funder

University of Minnesota

UNAM

CONAHCYT “Ciencia de Frontera”

Instituto de Física, UNAM

University of Florida

Publisher

MDPI AG

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