English

A Radio Astronomy Search for Cold Dark Matter Axions

Cosmology and Nongalactic Astrophysics 2017-08-07 v1

Abstract

The search for axions has gained ground in recent years, with laboratory searches for cold dark matter (CDM) axions, relativistic solar axions and ultra-light axions the subject of extensive literature. In particular, the interest in axions as a CDM candidate has been motivated by its potential to account for all of the inferred value of ΩDM0.26\Omega_{DM} \sim 0.26 in the standard ΛCDM\Lambda CDM model. Indeed, the value of ΩDM0.26\Omega_{DM} \sim 0.26 could be provided by a light axion. We investigate the possibility of complementing existing axion search experiments with radio telescope observations in an attempt to detect axion conversion in astrophysical magnetic fields. Searching for a CDM axion signal from a large-scale astrophysical environment provides new challenges, with the magnetic field structure playing a crucial role in both the rate of interaction and the properties of the observed photon. However, with a predicted frequency in the radio band (200MHz - 200GHz) and a distinguishable spectral profile, next generation radio telescopes may offer new opportunities for detection. The SKA-mid telescope has a planned frequency range of 0.4 - 13.8GHz with optimal sensitivity in the range \sim 2 - 7 GHz. Considering observations at 500\sim 500MHz, the limiting sensitivity is expected to be 0.04\sim 0.04mK based on a 24 hour integration time. This compares with a predicted CDM axion all-sky signal temperature of 0.04\sim 0.04mK using SKA Phase 1 telescopes and up to 1.17\sim 1.17mK using a collecting area of (1km)2^2 as planned for Phase 2.

Keywords

Cite

@article{arxiv.1708.01399,
  title  = {A Radio Astronomy Search for Cold Dark Matter Axions},
  author = {Katharine Kelley and P. J. Quinn},
  journal= {arXiv preprint arXiv:1708.01399},
  year   = {2017}
}