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Emerging chromo-natural inflation

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arxiv 1807.03358 v2 pith:ULMISYC5 submitted 2018-07-06 hep-ph astro-ph.COgr-qchep-th

Emerging chromo-natural inflation

classification hep-ph astro-ph.COgr-qchep-th
keywords inflationregimebackgroundgaugescalesabelianchromo-naturalcosmic
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The shift-symmetric coupling of a pseudo-scalar particle driving inflation to gauge fields provides a unique way of probing cosmic inflation. We show for an SU(2) gauge group how a classical isotropic background gauge field develops from the standard quantum mechanical vacuum in the far past. Over the course of inflation, the theory dynamically evolves from an approximately abelian regime into an inherently non-abelian regime, with distinct predictions for the scalar and tensor power spectra. The latter regime closely resembles a setup known as chromo-natural inflation, although our main focus here is on a new part of the parameter space which has received little attention so far. For single-field slow roll inflation models, large scales may exit the horizon in the abelian regime, ensuring agreement with the observations of the anisotropies in the cosmic microwave background, whereas smaller scales experience the non-abelian effects. This results in a strong enhancement of the stochastic gravitational wave background at small scales, e.g. at frequencies accessible with ground-based interferometers. For the scalar power spectrum, a similar enhancement arises due to non-linear contributions.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Pure Natural Inflation Passes the ACT

    astro-ph.CO 2026-03 unverdicted novelty 4.0

    Pure natural inflation remains viable against latest ACT+DESI constraints, with a non-trivial fraction of parameter space allowed under standard reheating scenarios.

  2. Pure Natural Inflation Passes the ACT

    astro-ph.CO 2026-03 conditional novelty 3.5

    Pure natural inflation remains compatible with ACT+DESI constraints on ns and r for small positive and mildly negative p under instantaneous and perturbative reheating.