English

Detection of isotropic cosmic birefringence and its implications for axion-like particles including dark energy

Cosmology and Nongalactic Astrophysics 2021-05-19 v3 High Energy Physics - Phenomenology

Abstract

We investigate the possibility that axion-like particles (ALPs) with various potentials account for the isotropic birefringence recently reported by analyzing the Planck 2018 polarization data. For the quadratic and cosine potentials, we obtain lower bounds on the mass, coupling constant to photon gg, abundance and equation of state of the ALP to produce the observed birefringence. Especially when the ALP is responsible for dark energy, it is possible to probe the tiny deviation of dark energy equation of state from 1-1 through the cosmic birefringence. We also explore ALPs working as early dark energy (EDE), which alleviates the Hubble tension problem. Since the other parameters are limited by the EDE requirements, we narrow down the ALP-photon coupling to 1019GeV1g1016GeV110^{-19}\, {\rm GeV}^{-1}\lesssim g\lesssim 10^{-16}\, {\rm GeV}^{-1} for the decay constant f=Mplf=M_\mathrm{pl}. Therefore, the Hubble tension and the isotropic birefringence imply that gg is typically the order of f1f^{-1}, which is a non-trivial coincidence.

Keywords

Cite

@article{arxiv.2011.11894,
  title  = {Detection of isotropic cosmic birefringence and its implications for axion-like particles including dark energy},
  author = {Tomohiro Fujita and Kai Murai and Hiromasa Nakatsuka and Shinji Tsujikawa},
  journal= {arXiv preprint arXiv:2011.11894},
  year   = {2021}
}

Comments

19pages, 7 figures, typos corrected