paper

The Cosmophenomenology of Axionic Dark Radiation

arXiv:1304.1804 · doi:10.1007/JHEP10(2013)214

Abstract

Relativistic axions are good candidates for the dark radiation for which there are mounting observational hints. The primordial decays of heavy fields produce axions which are ultra-energetic compared to thermalised matter and inelastic axion-matter scattering can occur with , thus accessing many interesting processes which are otherwise kinematically forbidden in standard cosmology. Axion-photon scattering into quarks and leptons during BBN affects the light element abundances, and bounds on overproduction of He constrain a combination of the axion decay constant and the reheating temperature. For supersymmetric models, axion scattering into visible sector superpartners can give direct non-thermal production of dark matter at . Most axions --- or any other dark radiation candidate from modulus decay --- still linger today as a Cosmic Axion Background with , and a flux of .

25 pages, 9 figures. Published version

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