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Polynomial Chaotic Inflation in Supergravity

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abstract

We present a general polynomial chaotic inflation model in supergravity, for which the predicted spectral index and tensor-to-scalar ratio can lie within the 1 sigma region allowed by the Planck results. Most importantly, the predicted tensor-to-scalar ratio is large enough to be probed in the on-going and future B-mode experiments. We study the inflaton dynamics and the subsequent reheating process in a couple of specific examples. The non-thermal gravitino production from the inflaton decay can be suppressed in a case with a discrete Z_2 symmetry. We find that the reheating temperature can be naturally as high as O(10^{9-10}) GeV, sufficient for baryon asymmetry generation through (non-)thermal leptogenesis.

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astro-ph.CO 1

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2024 1

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CONDITIONAL 1

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Large Field Polynomial Inflation in Palatini $f(R,\phi)$ Gravity

astro-ph.CO · 2024-11-12 · conditional · novelty 4.0

Large-field polynomial inflation in Palatini f(R, phi) gravity can match Planck and BICEP/Keck data over broad parameter regions, and a negative R-squared coupling can suppress the tensor-to-scalar ratio to CMB-S4 levels.

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  • Large Field Polynomial Inflation in Palatini $f(R,\phi)$ Gravity astro-ph.CO · 2024-11-12 · conditional · none · ref 31 · internal anchor

    Large-field polynomial inflation in Palatini f(R, phi) gravity can match Planck and BICEP/Keck data over broad parameter regions, and a negative R-squared coupling can suppress the tensor-to-scalar ratio to CMB-S4 levels.