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Perturbative region on non-Gaussian parameter space in single-field inflation

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arxiv 2204.05202 v2 pith:MPNSE2R3 submitted 2022-04-11 hep-th astro-ph.CO

classification hep-thastro-ph.CO
keywords correctionone-loopregioncontributioninflationperturbationsingle-fieldtree-level
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We calculate one-loop correction to the two-point functions of curvature perturbation in single-field inflation generated by cubic self-interaction. Incorporating the observed red-tilted spectrum of curvature perturbation, the relevant one-loop correction takes a finite value and inversely proportional to the spectral tilt. Requiring one-loop correction to be much smaller than the tree-level contribution leads to an upper bound on primordial non-Gaussianity. While observationally allowed region of non-Gaussian parameter space is found to be entirely included by the region, where one-loop correction is smaller than the tree-level contribution, an appreciably large region has one-loop correction larger than 1% or even 10% of the latter. If future observations conclude non-Gaussianity falls in such a region, then it would be important to incorporate higher-order corrections to the spectrum in order to achieve precise cosmology. In some extreme cases, where one-loop correction has a comparable magnitude to the tree-level contribution, it might indicate breakdown of the cosmological perturbation theory in the context of single-field inflation.

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  1. Inflationary background renormalization

    hep-th 2025-04 conditional novelty 6.0 of 10

    In single-field inflation, imposing a zero one-point function for the curvature perturbation leaves a finite, scheme-dependent one-loop correction to the two-point function that background renormalization cannot absorb.

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