English

Axion Kinetic Misalignment and Parametric Resonance from Inflation

High Energy Physics - Phenomenology 2020-09-02 v1 Cosmology and Nongalactic Astrophysics

Abstract

Axion cold dark matter from standard misalignment typically requires a decay constant fa  1011f_a~\gtrsim~10^{11} GeV. Kinetic misalignment and parametric resonance easily allow lower values of faf_a when the radial Peccei-Quinn (PQ) symmetry breaking field takes large initial values. Here, we consider the effects of inflation on kinetic misalignment and parametric resonance. We assume that the initial PQ field value is determined by quantum fluctuations, and is set by the Hubble parameter during inflation, HIH_I, and the PQ field mass. PQ field oscillations begin before or after the completion of reheating after inflation at a temperature TRT_R. We determine the range of faf_a and the inflationary parameters (HI,TR)(H_I, T_R) consistent with axion dark matter for a quartic potential for the PQ field. We find that 4×1084\times 10^8 GeV <fa<1011< f_a < 10^{11} GeV can consistently produce axion dark matter. A significant portion of the allowed parameter space predicts rare kaon decays, KL(π0+missing  energy)K_L \rightarrow (\pi^0 + \rm{missing \; energy}), and/or suppression of structure formation on small scales.

Keywords

Cite

@article{arxiv.2004.00629,
  title  = {Axion Kinetic Misalignment and Parametric Resonance from Inflation},
  author = {Raymond T. Co and Lawrence J. Hall and Keisuke Harigaya and Keith A. Olive and Sarunas Verner},
  journal= {arXiv preprint arXiv:2004.00629},
  year   = {2020}
}

Comments

40 pages, 6 figures

R2 v1 2026-06-23T14:35:49.186Z