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Clockwork Axions in Cosmology: Is Chromonatural Inflation Chrononatural?

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arxiv 1806.09621 v1 pith:P5JLGYNF submitted 2018-06-25 hep-th astro-ph.COhep-ph

classification hep-thastro-ph.COhep-ph
keywords axionlargeinflationchromonaturalclockworkcouplingaxionscompletion
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abstract

Many cosmological models rely on large couplings of axions to gauge fields. Examples include theories of magnetogenesis, inflation on a steep potential, chiral gravitational waves, and chromonatural inflation. Such theories require a mismatch between the axion field range and the mass scale appearing in the $a F \widetilde{F}$ coupling. This mismatch suggests an underlying monodromy, with the axion winding around its fundamental period a large number of times. We investigate the extent to which this integer can be explained as a product of smaller integers in a UV completion: in the parlance of our times, can the theory be "clockworked"? We argue that a clockwork construction producing a potential $\mu^4 \cos(\frac{a}{j F_a})$ for an axion of fundamental period $F_a$ will obey the constraint $\mu < F_a$. For some applications, including chromonatural inflation with sub-Planckian field range, this constraint obstructs a clockwork UV completion. Alternative routes to a large coupling include fields of large charge (an approach limited by strong coupling) or kinetic mixing (requiring a lighter axion). Our results suggest that completions of axion cosmologies that explain the large parameter in the theory potentially alter the phenomenological predictions of the model.

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  1. Pure Chromo-Natural Inflation: Signatures of Particle Production from Weak to Strong Backreaction

    astro-ph.CO 2025-04 conditional novelty 6.0 of 10

    Pure chromo-natural inflation unavoidably transitions from weak to strong backreaction, producing a chiral three-peak gravitational wave spectrum and a scalar peak that can form primordial black holes.

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