Propagation of Ultra-High-Energy Cosmic Ray Nuclei in Cosmic Magnetic Fields and Implications for Anisotropy Measurements
arXiv:1202.2874 · doi:10.1016/j.astropartphys.2012.03.008
Abstract
(Abridged) Recent results from the Pierre Auger Observatory (PAO) indicate that the composition of ultra-high-energy cosmic rays (UHECRs) with energies above eV may be dominated by heavy nuclei. An important question is whether the distribution of arrival directions for such UHECR nuclei can exhibit observable anisotropy or positional correlations with their astrophysical source objects despite the expected strong deflections by intervening magnetic fields. For this purpose, we have simulated the propagation of UHECR nuclei including models for both the extragalactic magnetic field and the Galactic magnetic field. Assuming that only iron nuclei are injected steadily from sources with equal luminosity and spatially distributed according to the observed large scale structure in the local Universe, at the number of events published by the PAO so far, the arrival distribution of UHECRs would be consistent with no auto-correlation at 95% confidence if the mean number density of UHECR sources Mpc, and consistent with no cross-correlation with sources within 95% errors for Mpc. On the other hand, with 1000 events above eV in the whole sky, next generation experiments can reveal auto-correlation with more than 99% probability even for Mpc, and cross-correlation with sources with more than 99% probability for Mpc. In addition, we find that the contribution of Centaurus A is required to reproduce the currently observed UHECR excess in the Centaurus region. Secondary protons generated by photodisintegration of primary heavy nuclei during propagation play a crucial role in all cases, and the resulting anisotropy at small angular scales should provide a strong hint of the source location if the maximum energies of the heavy nuclei are sufficiently high.
17 pages, 15 figures
References in corpus (22)
- Turbulence and Magnetic Fields in the Large Scale Structure of the Universe
- Lower limit on the strength and filling factor of extragalactic magnetic fields
- High-energy Particle Acceleration and Production of Ultra-high-energy Cosmic Rays in the Giant Lobes of Centaurus A
- Search for Correlations between HiRes Stereo Events and Active Galactic Nuclei
- Anisotropy vs chemical composition at ultra-high energies
- Propagation of high-energy cosmic rays in extragalactic turbulent magnetic fields: resulting energy spectrum and composition
- Searching for a Correlation Between Cosmic-Ray Sources Above 10^{19} eV and Large-Scale Structure
- Propagation of UHE Protons through Magnetized Cosmic Web
- On the ultra-high energy cosmic ray horizon
- Acceleration of Ultra-High Energy Cosmic Rays in the Colliding Shells of Blazars and GRBs: Constraints from the Fermi Gamma ray Space Telescope
- Ultra-High Energy Cosmic Rays, Spiral galaxies and Magnetars
- On Active Galactic Nuclei as Sources of Ultra-High Energy Cosmic Rays
- Distortion of Ultra-high-energy sky by Galactic Magnetic Field
- Ultrahigh energy cosmic ray acceleration in newly born magnetars and their associated gravitational wave signatures
- Cross-Correlation between UHECR Arrival Distribution and Large-Scale Structure
- Ultra-High-Energy Cosmic Rays from the Radio Lobes of AGNs
- Implications to Sources of Ultra-high-energy Cosmic Rays from their Arrival Distribution
- Spectrum and Composition of Ultra-high Energy Cosmic Rays from Semi-relativistic Hypernovae
- A global autocorrelation study after the first Auger data: impact on the number density of UHECR sources
- Composition of UHECR and the Pierre Auger Observatory Spectrum
- The Production of Ultra High Energy Cosmic Rays during the Early Epochs of Radio-loud AGN
- Towards unravelling the structural distribution of ultra-high-energy cosmic ray sources
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- 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
- Testing the Newborn Pulsar Origin of Ultrahigh Energy Cosmic Rays with EeV Neutrinos
- Simulations of ultra-high Energy Cosmic Rays in the local Universe and the origin of Cosmic Magnetic Fields
- Ultrahigh-energy Cosmic-ray Nuclei from Black Hole Jets: Recycling Galactic Cosmic Rays through Shear Acceleration
- Search for Anisotropy of Ultra-High Energy Cosmic Rays with the Telescope Array Experiment
- UHECR Composition Models
- A Monte Carlo Bayesian Search for the Plausible Source of the Telescope Array Hotspot
- Ultrahigh-Energy Cosmic Ray Production by Turbulence in Gamma-Ray Burst Jets and Cosmogenic Neutrinos
- Evidence of Intermediate-Scale Energy Spectrum Anisotropy of Cosmic Rays E10 eV with the Telescope Array Surface Detector
- Anisotropy expectations for ultra-high-energy cosmic rays with future high statistics experiments
- The Centaurus A Ultrahigh-Energy Cosmic Ray Excess and the Local Extragalactic Magnetic Field
- On the anisotropy in the arrival directions of ultra-high-energy cosmic rays
- Isotropy constraints on powerful sources of ultrahigh-energy cosmic rays at eV
- Ensemble Fluctuations of the Flux and Nuclear Composition of Ultra-High Energy Cosmic Ray Nuclei
- Acceleration and propagation of ultrahigh energy cosmic rays
- Ultrahigh energy cosmic rays from nearby starburst galaxies
- On the Measurement of the Helicity of Intergalactic Magnetic Fields Using Ultra-High-Energy Cosmic Rays
- Revisiting Propagation Delays of Ultra-High-Energy Cosmic Rays from Long-lived Sources