Constraints on UHECR sources and extragalactic magnetic fields from directional anisotropies
arXiv:2312.02645 · doi:10.3847/1538-4357/ad2f3f
Abstract
A dipole anisotropy in ultra-high-energy cosmic ray (UHECR) arrival directions, of extragalactic origin, is now firmly established at energies E > 8 EeV. Furthermore, the UHECR angular power spectrum shows no power at smaller angular scales than the dipole, apart from hints of possible individual hot or warm spots for energy thresholds 40 EeV. Here, we exploit the magnitude of the dipole and the limits on smaller-scale anisotropies to place constraints on two quantities: the extragalactic magnetic field (EGMF) and the number density of UHECR sources or the volumetric event rate if UHECR sources are transient. We also vary the bias between the extragalactic matter and the UHECR source densities, reflecting whether UHECR sources are preferentially found in over- or under-dense regions, and find that little or no bias is favored. We follow Ding et al. (2021) in using the Cosmic Flows 2 density distribution of the local universe as our baseline distribution of UHECR sources, but we improve and extend that work by employing an accurate and self-consistent treatment of interactions and energy losses during propagation. Deflections in the Galactic magnetic field are treated using both the full JF12 magnetic field model, with random as well as coherent components, or just the coherent part, to bracket the impact of the GMF on the dipole anisotropy. This Large Scale Structure (LSS) model gives good agreement with both the direction and magnitude of the measured dipole anisotropy and forms the basis for simulations of discrete sources and the inclusion of EGMF effects.
References in corpus (22)
- Array Programming with NumPy
- Observation of a Large-scale Anisotropy in the Arrival Directions of Cosmic Rays above eV
- Depth of Maximum of Air-Shower Profiles at the Pierre Auger Observatory: Measurements at Energies above 10^17.8 eV
- Measurement of the cosmic-ray energy spectrum above eV using the Pierre Auger Observatory
- The Evolution of Galaxy Number Density at z < 8 and its Implications
- Giant AGN Flares and Cosmic Ray Bursts
- Measurement of the rate of stellar tidal disruption flares
- A very luminous jet from the disruption of a star by a massive black hole
- AugerPrime: the Pierre Auger Observatory Upgrade
- Searches for Neutrinos from Gamma-Ray Bursts using the IceCube Neutrino Observatory
- Propagation of Ultra High Energy Cosmic Rays in Extragalactic Magnetic Fields: A view from cosmological simulations
- The clustering and bias of radio-selected AGN and star-forming galaxies in the COSMOS field
- Ultrahigh energy cosmic rays from a nearby extragalactic source in the diffusive regime
- Practical Modeling of Large-Scale Galactic Magnetic Fields: Status and Prospects
- The Galactic Magnetic Field and Ultrahigh-Energy Cosmic Ray Deflections
- A Uniformly Selected, All-Sky, Optical AGN Catalog
- Search for Large-scale Anisotropy on Arrival Directions of Ultra-high-energy Cosmic Rays Observed with the Telescope Array Experiment
- The extragalactic ultra-high energy cosmic-ray dipole
- Impact of Galaxy Clusters on UHECR propagation
- Full sky harmonic analysis hints at large UHECR deflections
- Simulations for a next-generation UHECR observatory
- Science with the Global Cosmic-ray Observatory (GCOS)
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- Large-scale cosmic ray anisotropies with 19 years of data from the Pierre Auger Observatory
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- The large-scale anisotropy and flux (de-)magnification of ultra-high-energy cosmic rays in the Galactic magnetic field
- Ultra-high-energy Cosmic Ray Sources can be Gamma-ray Dim
- Revisiting Propagation Delays of Ultra-High-Energy Cosmic Rays from Long-lived Sources
- Effects of extragalactic magnetic field on the spectra of ultra-high-energy cosmic rays from jetted sources
- Displacement of ultra-high-energy cosmic ray source images by the intergalactic magnetic field: the cases of Cen A and M83