The RGB tip of galactic globular clusters and the revision of the bound of the axion-electron coupling
arXiv:2010.03833 · doi:10.1051/0004-6361/202038775
Abstract
By combining Hubble Space Telescope (HST) and ground based optical and near-infrared photometric samples, we derive the RGB tip absolute magnitude of 22 galactic globular clusters (GGCs). The effects of varying the distance and the metallicity scales are also investigated. Then we compare the observed tip luminosities with those predicted by state-of-the-art stellar models that include the energy-loss due to the axion production in the degenerate core of red giant stars. We find that theoretical predictions including only the energy-loss by plasma neutrinos are, in general, in good agreement with the observed tip bolometric magnitudes, even though the latter are about 0.04 mag brighter, on the average. This small shift may be the result of systematic errors affecting the evaluation of the RGB tip bolometric magnitudes or, alternatively, it could be ascribed to an axion-electron coupling causing a non-negligible thermal production of axions. In order to estimate the strength of this possible axion sink, we perform a cumulative likelihood analysis using the RGB tips of the whole set of 22 GGCs. All the possible source of uncertainties affecting both the measured bolometric magnitudes and the corresponding theoretical predictions are carefully considered. As a result, we find that the value of the axion-electron coupling parameter that maximizes the likelihood probability is gae/10^13=0.60(+0.32;-0.58). This hint is valid, however, if the dominant energy sinks operating in the core of red giant stars are standard neutrinos and axions coupled with electrons. Any additional energy-loss process, not included in the stellar models, would reduce such a hint. Nevertheless, we find that values gae/10^13 > 1.48 can be excluded with a 95% of confidence.
accepted by Astronomy and Astrophysics
References in corpus (18)
- The landscape of QCD axion models
- The ACS Survey of Galactic Globular Clusters. I. Overview and Clusters Without Previous HST Photometry
- Excess Electronic Recoil Events in XENON1T
- Revisiting the bound on axion-photon coupling from Globular Clusters
- Calibration of the Tip of the Red Giant Branch (TRGB)
- The effects of He I 10830 on helium abundance determinations
- Revisiting the axion bounds from the Galactic white dwarf luminosity function
- Homogeneous photometry VII. Globular clusters in the Gaia era
- First measurement of the 14N(p,gamma)15O cross section down to 70 keV
- Limits on Axion Couplings from the first 80-day data of PandaX-II Experiment
- The brightness of the Red Giant Branch tip: Theoretical framework, a set of reference models, and predicted observables
- XENON1T excess from anomaly-free ALP dark matter and its implications for stellar cooling anomaly
- Solar axions cannot explain the XENON1T excess
- Low temperature Rosseland opacities with varied abundances of carbon and nitrogen
- A Method to Derive the Absolute Composition of the Sun, the Solar System and the Stars
- Radio timing and optical photometry of the black widow system PSR J1518+0204C in the globular cluster M5
- Proper motions and structural parameters of the Galactic globular cluster M71
- A population of binaries in the Asymptotic Giant Branch of 47 Tucanae?
Cited by in corpus (42)
- Feebly-Interacting Particles:FIPs 2020 Workshop Report
- A Next-Generation Liquid Xenon Observatory for Dark Matter and Neutrino Physics
- Upper Limit on the QCD Axion Mass from Isolated Neutron Star Cooling
- Getting the most on supernova axions
- No evidence for axions from Chandra observation of magnetic white dwarf
- Supernova bound on Axion-Like Particles coupled with electrons
- Stellar Evolution confronts Axion Models
- The DFSZ axion in the CMB
- Axion Astrophysics
- Axion-like particles as mediators for dark matter: beyond freeze-out
- Spin-dependent exotic interactions
- Selective enhancement of the QCD axion couplings
- White dwarfs as Physics laboratories: lights and shadows
- New Opportunities for Detecting Axion-Lepton Interactions
- Projected sensitivities of the LUX-ZEPLIN (LZ) experiment to new physics via low-energy electron recoils
- Constraining heavy axion-like particles by energy deposition in Globular Cluster stars
- Discovery prospects with the Dark-photons & Axion-Like particles Interferometer
- Revisiting axion-electron bremsstrahlung emission rates in astrophysical environments
- Dark matter capture and annihilation in stars: Impact on the red giant branch tip
- Thermal axions with multi-eV masses are possible in low-reheating scenarios
- Probing high-energy solar axion flux with a large scintillation neutrino detector
- High-quality axions in solutions to the problem
- Lepto-axiogenesis and the scale of supersymmetry
- Betelgeuse Constraints on Coupling between Axion-like Particles and Electrons
- New calibrated models for the TRGB luminosity and a thorough analysis of theoretical uncertainties
- Baryogenesis from Decaying Magnetic Helicity in Axiogenesis
- Anomaly-free axion dark matter in three Higgs doublet model and its phenomenological implications
- Running effects on QCD axion phenomenology
- Acoustic Misalignment Mechanism for Axion Dark Matter
- Aspects of Axions and ALPs Phenomenology
- Do Finite Density Effects Jeopardize Axion Nucleophobia in Supernovae?
- Axion-photon multimessenger astronomy with giant flares
- Digging into Axion Physics with (Baby)IAXO
- Muon Anomaly and Neutrino Magnetic Moments
- Stellar evolution and axion-like particles: new constraints and hints from globular clusters in the GAIA DR3 data
- Impact of Simultaneous Stellar Modeling Uncertainties on the Tip of the Red Giant Branch for Axion-Election Coupling
- Advancing Globular Cluster Constraints on the Axion-Photon Coupling
- On the possibility of mixed axion/neutralino dark matter in specific SUSY DFSZ axion models
- An introduction to axions and their detection
- The Impact of Axion-Like Particles on Late Stellar Evolution From Intermediate-Mass Stars to core-collapse Supernova Progenitors
- Search for Axion-Like Particles from Nearby Pre-Supernova Stars
- Probing Heavy Dark Matter in Red Giants