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The Effective Field Theory of Inflation Models with Sharp Features

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arxiv 1307.3483 v2 pith:FELGSGMA submitted 2013-07-12 astro-ph.CO

The Effective Field Theory of Inflation Models with Sharp Features

classification astro-ph.CO
keywords featuresfieldbispectrumeffectiveinflationinflatonmodelspower-spectrum
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We describe models of single-field inflation with small and sharp step features in the potential (and sound speed) of the inflaton field, in the context of the Effective Field Theory of Inflation. This approach allows us to study the effects of features in the power-spectrum and in the bispectrum of curvature perturbations, from a model-independent point of view, by parametrizing the features directly with modified "slow-roll" parameters. We can obtain a self-consistent power-spectrum, together with enhanced non-Gaussianity, which grows with a quantity $\beta$ that parametrizes the sharpness of the step. With this treatment it is straightforward to generalize and include features in other coefficients of the effective action of the inflaton field fluctuations. Our conclusion in this case is that, excluding extrinsic curvature terms, the only interesting effects at the level of the bispectrum could arise from features in the first slow-roll parameter $\epsilon$ or in the speed of sound $c_s$. Finally, we derive an upper bound on the parameter $\beta$ from the consistency of the perturbative expansion of the action for inflaton perturbations. This constraint can be used for an estimation of the signal-to-noise ratio, to show that the observable which is most sensitive to features is the power-spectrum. This conclusion would change if we consider the contemporary presence of a feature and a speed of sound $c_s < 1$, as, in such a case, contributions from an oscillating folded configuration can potentially make the bispectrum the leading observable for feature models.

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Cited by 3 Pith papers

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  1. Scale-Dependent Loop Corrections to the Inflationary Power Spectrum

    astro-ph.CO 2026-03 conditional novelty 7.0

    One-loop gravitational corrections in inflationary models with scale-dependent features are renormalizable and vanish on large and small scales, preserving perturbativity of CMB-fit feature models.

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    astro-ph.CO 2026-06 unverdicted novelty 5.0

    Joint power spectrum and bispectrum analysis from future HI intensity mapping surveys improves constraints on primordial feature amplitudes by 30-40% and achieves percent-level precision on oscillation frequencies whe...

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