Ultra-High-Energy Cosmic Rays from Radio Galaxies
arXiv:1701.06792 · doi:10.1088/1475-7516/2018/02/036
Abstract
Radio galaxies are intensively discussed as the sources of cosmic rays observed above about , called ultra-high energy cosmic rays (UHECRs). We present a first, systematic approach that takes the individual characteristics of these sources into account, as well as the impact of the extragalactic magnetic-field structures up to a distance of 120 Mpc. We use a mixed simulation setup, based on 3D simulations of UHECRs ejected by observed, individual radio galaxies taken out to a distance of 120 Mpc, and on 1D simulations over a continuous source distribution contributing from beyond 120 Mpc. Additionally, we include the ultra-luminous radio galaxy Cygnus A at a distance of about Mpc, as its contribution is so strong that it must be considered as an individual point source. The implementation of the UHECR ejection in our simulation setup is based on a detailed consideration of the physics of radio jets and standard first-order Fermi acceleration. We show that the average contribution of radio galaxies taken over a very large volume cannot explain the observed features of UHECRs measured at Earth. However, we obtain excellent agreement with the spectrum, composition, and arrival-direction distribution of UHECRs measured by the Pierre Auger Observatory, if we assume that most UHECRs observed arise from only two sources: The ultra-luminous radio galaxy Cygnus A, providing a mostly light composition of nuclear species dominating up to about eV, and the nearest radio galaxy Centaurus A, providing a heavy composition dominating above eV. Here we have to assume that extragalactic magnetic fields out to 250 Mpc, which we did not include in the simulation, are able to isotropize the UHECR events at about 8 EeV arriving from Cygnus A.
References in corpus (21)
- The NumPy array: a structure for efficient numerical computation
- 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
- Radio sources in the 6dFGS: Local luminosity functions at 1.4 GHz for star-forming galaxies and radio-loud AGN
- 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
- Modeling the Emission Processes in Blazars
- High-energy neutrinos in the context of multimessenger physics
- Cosmogenic Neutrinos: parameter space and detectabilty from PeV to ZeV
- Study of Ultra-High Energy Cosmic Ray Composition Using Telescope Array's Middle Drum Detector and Surface Array in Hybrid Mode
- Giant AGN Flares and Cosmic Ray Bursts
- New facts about muon production in Extended Air Shower simulations
- Measurement of the Flux of Ultra High Energy Cosmic Rays by the Stereo Technique
- Radio galaxies of the local universe: all-sky catalog, luminosity functions, and clustering
- 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
- Bayesian analysis of the dynamic cosmic web in the SDSS galaxy survey
- CRPropa: A Numerical Tool for the Propagation of UHE Cosmic Rays, Gamma-rays and Neutrinos
- Implications of Strong Intergalactic Magnetic Fields for Ultra-High-Energy Cosmic-Ray Astronomy
- Propagation of Ultra High Energy Cosmic Rays in Extragalactic Magnetic Fields: A view from cosmological simulations
- Ultrahigh-energy cosmic rays from tidally-ignited white dwarfs
- On the anisotropy in the arrival directions of ultra-high-energy cosmic rays
- Towards a model of population of astrophysical sources of ultra-high-energy cosmic rays
Cited by in corpus (45)
- Open Questions in Cosmic-Ray Research at Ultrahigh Energies
- Cosmogenic photon and neutrino fluxes in the Auger era
- A new view on Auger data and cosmogenic neutrinos in light of different nuclear disintegration and air-shower models
- CRPropa 3.2 -- an advanced framework for high-energy particle propagation in extragalactic and galactic spaces
- Determining the fraction of cosmic-ray protons at ultra-high energies with cosmogenic neutrinos
- Particle acceleration in astrophysical jets
- AGN jets as the origin of UHECRs and perspectives for the detection of astrophysical source neutrinos at EeV energies
- IMAGINE: A comprehensive view of the interstellar medium, Galactic magnetic fields and cosmic rays
- Ultra-high energy cosmic rays from shocks in the lobes of powerful radio galaxies
- Fornax A, Centaurus A and other radio galaxies as sources of ultra-high energy cosmic rays
- A new lepto-hadronic model applied to the first simultaneous multiwavelength data set for Cygnus X--1
- Hadronic High-energy Emission from Magnetically Arrested Disks in Radio Galaxies
- Constraining models for the origin of ultra-high-energy cosmic rays with a novel combined analysis of arrival directions, spectrum, and composition data measured at the Pierre Auger Observatory
- Scrutinizing FR 0 Radio Galaxies as Ultra-High-Energy Cosmic Ray Source Candidates
- Curious case of the maximum rigidity distribution of cosmic-ray accelerators
- Active Galactic Nuclei as potential Sources of Ultra-High Energy Cosmic Rays
- The Propagation of Cosmic Rays from the Galactic Wind Termination Shock: Back to the Galaxy?
- Secondary neutrino and gamma-ray fluxes from SimProp and CRPropa
- Modeling the spectrum and composition of ultrahigh-energy cosmic rays with two populations of extragalactic sources
- Extragalactic magnetic field constraints from ultra-high-energy cosmic rays from local galaxies
- The Spiderweb proto-cluster is being magnetized by its central radio jet
- Particle acceleration in radio galaxies with flickering jets: GeV electrons to ultrahigh energy cosmic rays
- The POEMMA (Probe of Extreme Multi-Messenger Astrophysics) Observatory
- Nuclear and electromagnetic cascades induced by ultrahigh-energy cosmic rays in radio galaxies: implications for Centaurus A
- Cosmic Ray Acceleration in Hydromagnetic Flux Tubes
- High Energy Cosmic Rays from Fanaroff-Riley Radio Galaxies
- Magnetically Induced Anisotropies in the Arrival Directions of Ultra-high-energy Cosmic Rays from Nearby Radio Galaxies
- UHECR Echoes from the Council of Giants
- Ultrahigh-energy neutrinos as a probe of espresso-shear acceleration in jets of Centaurus A
- Wormhole as a possible accelerator of high-energy cosmic-ray particles
- Cosmic ray acceleration to ultrahigh energy in radio galaxies
- Predictions for the flux of high-energy cosmogenic neutrinos and the influence of the extragalactic magnetic field
- Search for ultra high energy cosmic rays from radiogalaxy Virgo A
- Impact of the finite life-time of UHECR sources
- Nearby active galactic nuclei and starburst galaxies as sources of the measured UHECRs anisotropy signal
- Probing UHECR production in Centaurus A using secondary neutrinos and gamma-rays
- Determining the composition of radio plasma via circular polarization: the prospects of the Cygnus A hot spots
- Combined Fit of Spectrum and Composition for FR0 Radio-galaxy-emitted Ultra-high-energy Cosmic Rays with Resulting Secondary Photons and Neutrinos
- Constraining the baryon loading factor of AGN jets: implication from the gamma-ray emission of the Coma cluster
- Summing up Ultra-High-Energy Cosmic Rays from Radio Galaxies
- On gamma rays as predictors of UHECR flux in AGNs
- Displacement of ultra-high-energy cosmic ray source images by the intergalactic magnetic field: the cases of Cen A and M83
- Explaining the UHECR spectrum, composition and large-scale anisotropies with radio galaxies
- High-Energy Cosmic Rays from Radio Galaxies
- Echoes of the past: ultra-high energy cosmic rays accelerated by radio galaxies, scattered by starburst galaxies