Revisiting the bound on axion-photon coupling from Globular Clusters
arXiv:1406.6053 · doi:10.1103/PhysRevLett.113.191302
Abstract
We derive a strong bound on the axion-photon coupling from the analysis of a sample of 39 Galactic Globular Clusters. As recognized long ago, the R parameter, i.e. the number ratio of stars in horizontal over red giant branch of old stellar clusters, would be reduced by the axion production from photon conversions occurring in stellar cores. In this regard we have compared the measured R with state-of-the-art stellar models obtained under different assumptions for . We show that the estimated value of substantially depends on the adopted He mass fraction Y, an effect often neglected in previous investigations. Taking as benchmark for our study the most recent determinations of the He abundance in H II regions with O/H in the same range of the Galactic Globular Clusters, we obtain an upper bound GeV at 95 confidence level. This result significantly improves the constraints from previous analyses and is currently the strongest limit on the axion-photon coupling in a wide mass range.
(v2: 6 pages, 1 eps figure. Revised version. Discussion enlarged and references added. To appear on Physical Review Letters.)
References in corpus (10)
- Bose-Einstein Condensation of Dark Matter Axions
- Evidence for a new light spin-zero boson from cosmological gamma-ray propagation?
- Probing eV-scale axions with CAST
- A High Resolution Search for Dark-Matter Axions
- Axions and the cooling of white dwarf stars
- First measurement of the 14N(p,gamma)15O cross section down to 70 keV
- Constraining the Axion-Photon Coupling with Massive Stars
- Heavy elements in Globular Clusters: the role of AGB stars
- A Method to Derive the Absolute Composition of the Sun, the Solar System and the Stars
- Axion cold dark matter: status after Planck and BICEP2
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