Hint at an axion-like particle from the redshift dependence of blazar spectra
arXiv:1503.04436 · doi:10.1093/mnras/stz3410
Abstract
We consider the largest observed sample including all intermediate-frequency peaked (IBL) and high-frequency peaked (HBL) flaring blazars above 100 GeV up to redshift . We show that the best-fit regression line of the emitted spectral indices is a concave parabola decreasing as increases, thereby implying a statistical correlation between the distribution and . This result contradicts our expectation that such a distribution should be -independent. We argue that the above correlation does not arise from any selection bias. We show that our expectation naturally emerges provided that axion-like particles (ALPs) are put into the game. Moreover, ALPs can also explain why flat spectrum radio quasars emit up to 400 GeV, in sharp contradiction with conventional physics. So, the combination of the two very different but consistent results -- taken at face value -- leads to a hint at an ALP with mass and two-photon coupling in the range . As a bonus, the Universe would become considerably more transparent above energies than dictated by conventional physics. Our prediction can be checked not only by the new generation of observatories like CTA, HAWC, GAMMA-400, LHAASO, TAIGA-HiSCORE and HERD, but also thanks to the planned laboratory experiments ALPS II (upgraded), STAX, IAXO and with other techniques now being developed by Avignone and collaborators.
13 pages, 14 figures. This version matches the published paper: MNRAS 493, 1553 (2020)
References in corpus (13)
- New CAST Limit on the Axion-Photon Interaction
- Revisiting the bound on axion-photon coupling from Globular Clusters
- Evidence for a new light spin-zero boson from cosmological gamma-ray propagation?
- The extragalactic background light revisited and the cosmic photon-photon opacity
- New limits on extragalactic magnetic fields from rotation measures
- Behavior of axion-like particles in smoothed out domain-like magnetic fields
- Extragalactic photon--axion-like particle oscillations up to 1000 TeV
- Perspective of monochromatic gamma-ray line detection with the High Energy cosmic-Radiation Detection (HERD) facility onboard China's Space Station
- Axionic black branes with conformal coupling
- A hadronic minute-scale GeV flare from quasar 3C 279?
- Fundamental physics with blazar spectra: a critical appraisal
- The potential of large germanium detector arrays for solar-axion searches utilizing the axio-electric effect for detection
- Axion-like particles and high energy astrophysics
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