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Observational Constraints on Monomial Warm Inflation

Published 20 May 2016 in astro-ph.CO | (1605.06449v2)

Abstract: Warm inflation is, as of today, one of the best motivated mechanisms for explaining an early inflationary period. In this paper, we derive and analyze the current bounds on warm inflation with a monomial potential Uϕ<sup>pU\propto \phi<sup>p, using the constraints from the PLANCK mission. In particular, we discuss the parameter space of the tensor-to-scalar ratio rr and the potential coupling λ\lambda of the monomial warm inflation in terms of the number of e-folds. We obtain that the theoretical tensor-to-scalar ratio r10<sup>8r\sim 10<sup>{-8} is much smaller than the current observational constrain r0.12r \lesssim 0.12, despite a relatively large value of the field excursion $\Delta \phi \sim 0.1\MP$. Warm inflation thus eludes the Lyth bound set on the tensor-to-scalar ratio by the field excursion.

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