English

Early Structure Formation Constraints on the Ultra-Light Axion in the Post-Inflation Scenario

Cosmology and Nongalactic Astrophysics 2020-06-24 v2 Astrophysics of Galaxies High Energy Physics - Phenomenology High Energy Physics - Theory

Abstract

Many works have concentrated on the observable signatures of the dark matter being an ultralight axion-like particle (ALP). We concentrate on a particularly dramatic signature in the late-time cosmological matter power spectrum that occurs if the symmetry breaking that establishes the ALP happens after inflation -- white-noise density fluctuations that dominate at small scales over the adiabatic fluctuations from inflation. These fluctuations alter the early history of nonlinear structure formation. We find that for symmetry breaking scales of fA10131015f_A \sim 10^{13}-10^{15}GeV, which requires a high effective maximum temperature after inflation, ALP dark matter with particle mass of mA10131020m_A \sim 10^{-13}-10^{-20}eV could significantly change the number of high-redshift dwarf galaxies, the reionization history, and the Lyα\alpha forest. We consider all three observables. We find that the Lyα\alpha forest is the most constraining of current observables, excluding fA1015f_A \gtrsim 10^{15}GeV (mA1017m_A \lesssim 10^{-17}eV) in the simplest model for the ALP and considerably lower values in models coupled to a hidden strongly interacting sector (fA1013f_A \gtrsim 10^{13}GeV and mA1013m_A \lesssim 10^{-13}eV). Observations that constrain the extremely high-redshift tail of reionization may disfavor similar levels of isocurvature fluctuations as the forest. Future z2030z\sim 20-30 21cm observations have the potential to improve these constraints further using that the supersonic motions of the isocurvature-enhanced abundance of 104M\sim10^4M_\odot halos would shock heat the baryons, sourcing large BAO features.

Keywords

Cite

@article{arxiv.1911.11150,
  title  = {Early Structure Formation Constraints on the Ultra-Light Axion in the Post-Inflation Scenario},
  author = {Vid Iršič and Huangyu Xiao and Matthew McQuinn},
  journal= {arXiv preprint arXiv:1911.11150},
  year   = {2020}
}

Comments

16 pages, 8 figures; published in PRD