Differences Between the Pierre Auger Observatory and Telescope Array Spectra: Systematic Effects or Indication of a Local Source of Ultra-High-Energy Cosmic Rays?
arXiv:2208.12274 · doi:10.3847/1538-4357/acdf59
Abstract
The Pierre Auger Observatory (PAO) and Telescope Array (TA) collaborations report significant differences in the observed energy spectra of ultra-high-energy cosmic rays (UHECRs) above 30~EeV. In this work we present a joint fit of TA and PAO data using the rigidity-dependent maximum energy model, including a full marginalization over all relevant parameters. We test two possible scenarios to explain these differences. One is that they are due to complex energy-dependent experimental systematics; the other is the presence of a local astrophysical source in the Northern Hemisphere, which is only visible by the TA experiment. We show that the astrophysical and systematic scenarios improve the explanation of the data equally well, compared to the scenario where both experiments observe the same UHECR flux from a cosmological source distribution and have energy-independent systematics. We test different mass compositions emitted from the local source and conclude that the data are best described by a source lying at a distance below 26~Mpc that emits cosmic rays dominated by the silicon mass group. We also discuss possible source candidates, and the possible role of the putative local UHECR source in the observed TA anisotropy and in the differences in TA spectral data from different declination bands.
Accepted for publication in ApJ; 24 pages, 10 figures, 5 tables
References in corpus (12)
- New features in the simulation of neutrino oscillation experiments with GLoBES 3.0
- Time-integrated Neutrino Source Searches with 10 years of IceCube Data
- Indications of Intermediate-Scale Anisotropy of Cosmic Rays with Energy Greater Than 57 EeV in the Northern Sky Measured with the Surface Detector of the Telescope Array Experiment
- Measurement of the cosmic-ray energy spectrum above eV using the Pierre Auger Observatory
- A new view on Auger data and cosmogenic neutrinos in light of different nuclear disintegration and air-shower models
- Ultrahigh energy cosmic rays from a nearby extragalactic source in the diffusive regime
- Search for Large-scale Anisotropy on Arrival Directions of Ultra-high-energy Cosmic Rays Observed with the Telescope Array Experiment
- Revisiting the distance to the nearest UHECR source: Effects of extra-galactic magnetic fields
- The Cosmic Large-Scale Structure in X-rays (CLASSIX) Cluster Survey III: The Perseus-Pisces supercluster and the Southern Great Wall as traced by X-ray luminous galaxy clusters
- Galactic halo bubble magnetic fields and UHECR deflections
- Can we reconcile the TA excess and hotspot with Auger observations?
- Photohadronic Modelling of the 2010 Gamma-ray Flare from Mrk 421
Cited by in corpus (7)
- Constraints on the proton fraction of cosmic rays at the highest energies and the consequences for cosmogenic neutrinos and photons
- Upper Limits on the Cosmic Neutrino Background from Cosmic Rays
- Cosmic ray transport and acceleration with magnetic mirroring
- The distribution of ultra-high-energy cosmic rays along the supergalactic plane measured at the Pierre Auger Observatory
- New physics as a possible explanation for the Amaterasu particle
- Ultra-high energy event KM3-230213A as a cosmogenic neutrino in light of minimal UHECR flux models
- The Sensitivity of PUEO to Cosmogenic Neutrinos and Exotic Physics Scenarios