Ultra high-energy cosmic rays from beyond the Greisen-Zatsepin-Kuz'min horizon
arXiv:2107.12607 · doi:10.3847/1538-4357/ac185c
Abstract
Ultra-high-energy (UHE) cosmic rays (CRs) of energies , accelerated in violent astrophysical environments, interact with cosmic background radiation fields via photo-hadronic processes, leading to strong attenuation. Typically, the Universe would become `opaque' to UHE CRs after several tens of Mpc, setting the boundary of the Greisen-Zatsepin-Kuz'min (GZK) horizon. In this work, we investigate the contribution of sources beyond the conventional GZK horizon to the UHE CR flux observed on Earth, when photo-spallation of the heavy nuclear CRs is taken into account. We demonstrate this contribution is substantial, despite the strong attenuation of UHE CRs. A significant consequence is the emergence of an isotropic background component in the observed flux of UHE CRs, coexisting with the anisotropic foreground component that are associated with nearby sources. Multi-particle CR horizons, which evolve over redshift, are determined by the CR nuclear composition. Thus, they are dependent on the source populations and source evolutionary histories.
20 pages, 9 figures, 3 tables. Accepted for publication in ApJ
References in corpus (22)
- Cosmic Star Formation History
- Cosmic Reionization and Early Star-Forming Galaxies: A Joint Analysis of New Constraints from Planck and Hubble Space Telescope
- Toward the Standard Population Synthesis Model of the X-Ray Background: Evolution of X-Ray Luminosity and Absorption Functions of Active Galactic Nuclei Including Compton-Thick Populations
- Observation of a Large-scale Anisotropy in the Arrival Directions of Cosmic Rays above eV
- 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
- The Luminosity Function of X-ray Selected Active Galactic Nuclei: Evolution of Supermassive Black Holes at High Redshift
- The Cosmic Ray Energy Spectrum Observed with the Surface Detector of the Telescope Array Experiment
- The extragalactic background light revisited and the cosmic photon-photon opacity
- Features of the energy spectrum of cosmic rays above eV using the Pierre Auger Observatory
- A dip in the UHECR spectrum and the transition from galactic to extragalactic cosmic rays
- Search for Correlations between HiRes Stereo Events and Active Galactic Nuclei
- Searches for Large-Scale Anisotropy in the Arrival Directions of Cosmic Rays Detected above Energy of eV at the Pierre Auger Observatory and the Telescope Array
- AGN jets as the origin of UHECRs and perspectives for the detection of astrophysical source neutrinos at EeV energies
- Searching for a Correlation Between Cosmic-Ray Sources Above 10^{19} eV and Large-Scale Structure
- Enhanced Cosmological GRB Rates and Implications for Cosmogenic Neutrinos
- Constraining the Emissivity of Ultrahigh Energy Cosmic Rays in the Distant Universe with the Diffuse Gamma-ray Emission
- Starburst and post-starburst high-redshift protogalaxies: The feedback impact of high energy cosmic rays
- Statistical Analysis of the Correlation between Active Galactic Nuclei and Ultra-High Energy Cosmic Rays
- The Origin of Matter at the Base of Relativistic Jets in Active Galactic Nuclei
- Characterising the signatures of star-forming galaxies in the extra-galactic -ray background
- Energetics of ultrahigh-energy cosmic-ray nuclei
- Searches for correlation between UHECR events and high-energy gamma-ray Fermi-LAT data