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Signatures of Planck Corrections in a Spiralling Axion Inflation Model

The minimal sub-Planckian axion inflation model accounts for a large scalar-to-tensor ratio via a spiralling trajectory in the field space of a complex field $Φ$. Here we consider how the predictions of the model are modified by Planck scale-suppressed corrections. In the absence of Planck corrections the model is equivalent to a $ϕ^{4/3}$ chaotic inflation model. Planck corrections become important when the dimensionless coupling $ξ$ of $|Φ|^{2}$ to the topological charge density of the strongly-coupled gauge sector $F \tilde{F}$ satisfies $ξ\sim 1$. For values of $|Φ|$ which allow the Planck corrections to be understood via an expansion in powers of $|Φ|^{2}/M_{Pl}^{2}$, we show that their effect is to produce a significant modification of the tensor-to-scalar ratio from its $ϕ^{4/3}$ chaotic inflation value without strongly modifying the spectral index. In addition, to leading order in $|Φ|^2/M_{Pl}^{2}$, the Planck modifications of $n_{s}$ and $r$ satisfy a consistency relation, $Δn_{s} = - Δr/16$. Observation of these modifications and their correlation would allow the model to be distinguished from a simple $ϕ^{4/3}$ chaotic inflation model and would also provide a signature for the influence of leading-order Planck corrections.

preprint2015arXivOpen access

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