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Beyond the Starobinsky model for inflation

Dhong Yeon Cheong, Hyun Min Lee, Seong Chan Park

2020Physics Letters B60 citationsDOIOpen Access PDF

Abstract

We single out the Starobinsky model and its extensions among generic f(R) gravity as attractors at large field values for chaotic inflation. Treating a R3 curvature term as a perturbation of the Starobinsky model, we impose the phenomenological bounds on the additional term satisfying the successful inflationary predictions. We find that the scalar spectral index can vary in both the red or blue tilted direction, depending on the sign of the coefficient of the R3 term, whereas the tensor-to-scalar ratio is less affected in the Planck-compatible region. We also discuss the role of higher order curvature term for stability and the reheating dynamics for the unambiguous prediction for the number of efoldings up to the R3 term.

Topics & Concepts

PhysicsCurvatureAttractorInflation (cosmology)Eternal inflationPlanckSpectral indexPerturbation (astronomy)ChaoticTerm (time)Scalar (mathematics)Mathematical physicsTheoretical physicsScalar fieldInflatonQuantum mechanicsSpectral lineGeometryMathematical analysisComputer scienceMathematicsArtificial intelligenceCosmology and Gravitation TheoriesBlack Holes and Theoretical PhysicsGeophysics and Gravity Measurements