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Nonminimal Coleman--Weinberg Inflation with an $R^2$ term

Published 30 Oct 2018 in gr-qc, astro-ph.CO, hep-ph, and hep-th | (1810.12884v2)

Abstract: We extend the Coleman--Weinberg inflationary model where a scalar field $\phi$ is non-minimally coupled to gravity with the addition of the $R2$ term. We express the theory in terms of two scalar fields and going to the Einstein frame we employ the Gildener--Weinberg formalism, compute the one-loop effective potential and essentially reduce the problem to the case of single-field inflation. It turns out that there is only one free parameter, namely, the mixing angle between the scalars. For a wide range of this angle, we compute the inflationary observables which are in agreement with the latest experimental bounds. The effect of the $R2$ term is that it lowers the value of the tensor-to-scalar ratio $r$.

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