Spectra of fermions produced by a time-dependent axion in the radiation- and matter-dominated Universe
Aditya Kulkarni, Lorenzo Sorbo

TL;DR
This paper derives formulas to calculate the spectra of fermions produced by a time-dependent axion in different cosmological backgrounds, providing simplified expressions for radiation- and matter-dominated universes.
Contribution
It introduces general and approximate formulas for fermion spectra generated by axions in Friedmann-Lemaitre-Robertson-Walker universes, considering specific cosmological regimes.
Findings
Derived general formulas for fermion spectra in FLRW universes.
Provided simplified spectra expressions for radiation- and matter-dominated eras.
Neglected backreaction effects in the analysis.
Abstract
Axion-like degrees of freedom generally interact with fermions through a shift symmetric coupling. As a consequence, a time-dependent axion will lead to the generation of fermions by amplifying their vacuum fluctuations. We provide the formulae that allow one to determine the spectra of produced fermions in a generic Friedmann-Lemaitre-Robertson-Walker Universe with flat spatial slices. Then we derive simple approximate formulae for the spectra of the produced fermions, as a function of the model parameters, in the specific cases of a radiation- and a matter-dominated Universe, in the regime in which the backreaction of the produced fermions on the axionic background can be neglected.
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Taxonomy
TopicsDark Matter and Cosmic Phenomena · Cosmology and Gravitation Theories · Atomic and Subatomic Physics Research
