English

Extreme Axions Unveiled: a Novel Fluid Approach for Cosmological Modeling

Cosmology and Nongalactic Astrophysics 2024-06-13 v2 High Energy Physics - Phenomenology

Abstract

Axion-like particles (ALPs) are a well-motivated dark matter candidate that solve some of the problems in the clustering of large scale structure in cosmology. ALPs are often described by a simplified quadratic potential to specify the dynamics of the axion field, and are included in cosmological analysis codes using a modified fluid prescription. In this paper we consider the extreme axion: a version of the axion with a high initial field angle that produces an enhancement (rather than a suppression) of structure on small scales around the Jeans length, which can be probed by measurements of clustering such as the eBOSS DR14 Ly-α\alpha forest. We present a novel method of modeling the extreme axion as a cosmological fluid, combining the Generalized Dark Matter model with the effective fluid approach presented in the \texttt{axionCAMB} software, as well as implementing a series of computational innovations to efficiently simulate the extreme axions. We find that for axion masses between 1023 eVmax1022.5 eV10^{-23} \mathrm{\ eV} \lesssim m_\mathrm{ax} \lesssim 10^{-22.5} \mathrm{\ eV}, constraints on the axion fraction imposed by the eBOSS DR14 Ly-α\alpha forest can be significantly weakened by allowing them to be in the form of extreme axions with a starting angle between π101θiπ102\pi - 10^{-1} \lesssim \theta_i \lesssim \pi - 10^{-2}. This work motivates and enables a more robust hydrodynamical analysis of extreme axions in order to compare them to high-resolution Ly-α\alpha forest data in the future.

Keywords

Cite

@article{arxiv.2311.02052,
  title  = {Extreme Axions Unveiled: a Novel Fluid Approach for Cosmological Modeling},
  author = {Harrison Winch and Renee Hlozek and David J. E. Marsh and Daniel Grin and Keir Rogers},
  journal= {arXiv preprint arXiv:2311.02052},
  year   = {2024}
}

Comments

Minor edits and additions in response to journal referee comments, and a new Fig 11 illustratring the non-trivial range of axion starting angles that can alleviate observational constraints