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Beating the Lyth bound by parametric resonance during inflation
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We propose a novel mechanism for enhancing the primordial gravitational waves without significantly affecting the curvature perturbations produced during inflation. This is achieved due to non-linear sourcing of resonantly amplified scalar field fluctuations. Our result is an explicit scale-dependent counter-example of the famous Lyth bound, which opens up a promising perspective of producing detectable inflationary tensor modes with low-scale inflation and a sub-Planckian field excursion. We explicitly demonstrate the testability of our mechanism with upcoming Cosmic Microwave Background B-mode observations.
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Cited by 1 Pith paper
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PSpectCosmo: A Pseudo-Spectral Code for Cosmological Dynamics Spanning Inflation and Reheating
PSpectCosmo applies a pseudo-spectral method to inflationary lattice simulations and claims to resolve the divergent vacuum energy density by tracking a quantum-to-classical ratio R.
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