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arXiv:2109.10367·v2·High Energy Physics — Theory

Pole inflation from non-minimal coupling to gravity

Sotirios Karamitsos🇮🇹 · Alessandro Strumia🇮🇹

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Abstract

Transforming canonical scalars to the Einstein frame can give a multi-field generalization of pole inflation (namely, a scalar with a divergent kinetic term) at vanishing field-dependent Planck mass. However, to obtain an attractor, the scalar potential must obey certain non-generic conditions. These are automatically satisfied in Quantum Field Theories with dimension-less couplings. The resulting models of pole inflation have special inflationary predictions determined by the full RG running of couplings. Acceptable predictions for the tensor/scalar ratio arise for perturbative but moderately large couplings, so we explore the possible QFT runnings: to confinement, to an IR fixed point, and to a UV fixed point.

Comments: 22 pages, 5 figures; journal version

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