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An inflationary model with small scalar and large tensor nongaussianities

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abstract

We study a model of inflation where the scalar perturbations are almost gaussian while there is sizable (equilateral) nongaussianity in the tensor sector. In this model, a rolling pseudoscalar gravitationally coupled to the inflaton amplifies the vacuum fluctuations of a vector field. The vector sources both scalar and tensor metric perturbations. Both kinds of perturbations are nongaussian, but, due to helicity conservation, the tensors have a larger amplitude, so that nongaussianity in the scalar perturbations is negligible. Moreover, the tensors produced this way are chiral. We study, in the flat sky approximation, how constraints on tensor nongaussianities affect the detectability of parity violation in the Cosmic Microwave Background. We expect the model to feature interesting patterns on nongaussianities in the polarization spectra of the CMB.

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astro-ph.CO 1

years

2025 1

verdicts

UNVERDICTED 1

representative citing papers

Schwinger effect in axion inflation on a lattice

astro-ph.CO · 2025-06-25 · unverdicted · novelty 7.0

Lattice simulations show that Schwinger currents saturate gauge-field production in axion inflation, yielding universal conductivity and magnetic-field values at the onset of strong backreaction.

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  • Schwinger effect in axion inflation on a lattice astro-ph.CO · 2025-06-25 · unverdicted · none · ref 17 · internal anchor

    Lattice simulations show that Schwinger currents saturate gauge-field production in axion inflation, yielding universal conductivity and magnetic-field values at the onset of strong backreaction.