Minimizing the tensor-to-scalar ratio in single-field inflation models

Author:

Wolf William J.1ORCID

Affiliation:

1. University of Oxford

Abstract

We revisit a class of simple single-field inflation models and demonstrate that they can readily produce a negligible tensor/scalar ratio r. Motivated by recent work suggesting the need to introduce higher order operators to stabilize unregulated potentials, as well as by work indicating that such terms can have significant effects on observable predictions, we explicitly construct corrected versions of the quadratic hilltop potential that are motivated by an effective field theory expansion. We employ Markov Chain Monte Carlo methods and optimization techniques to sample viable models and minimize r. We find that such potentials can readily lower r values below projected CMB-S4 sensitivity, while still remaining within observable constraints on ns. Furthermore, we find that the minimum r reached for each order of the expansion considered is well described by a power law rmin(q)qB before asymptoting to a value of rmin1011, where q is the order to which the expansion of V(ϕ) is carried out. Published by the American Physical Society 2024

Funder

St. Cross College, University of Oxford

Publisher

American Physical Society (APS)

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