A lower bound on the number of cosmic ray events required to measure source catalogue correlations
arXiv:1509.04356 · doi:10.1088/1475-7516/2016/10/028
Abstract
Recent analyses of cosmic ray arrival directions have resulted in evidence for a positive correlation with active galactic nuclei positions that has weak significance against an isotropic source distribution. In this paper, we explore the sample size needed to measure a highly statistically significant correlation to a parent source catalogue. We compare several scenarios for the directional scattering of ultra-high energy cosmic rays given our current knowledge of the galactic and intergalactic magnetic fields. We find significant correlations are possible for a sample of 1000 cosmic ray protons with energies above 60 EeV.
23 pages, 9 figures
References in corpus (12)
- Radio observational constraints on Galactic 3D-emission models
- Searches for Anisotropies in the Arrival Directions of the Highest Energy Cosmic Rays Detected by the Pierre Auger Observatory
- Magnetic Field Seeding by Galactic Winds
- Search for Correlations between HiRes Stereo Events and Active Galactic Nuclei
- Searching for a Correlation Between Cosmic-Ray Sources Above 10^{19} eV and Large-Scale Structure
- Constraining models of the large scale Galactic magnetic field with WMAP5 polarization data and extragalactic Rotation Measure sources
- Redshift evolution of extragalactic rotation measures
- Anisotropy expectations for ultra-high-energy cosmic rays with future high statistics experiments
- Radio galaxies and their magnetic fields out to z <= 3
- The rotation measures of high luminosity sources as seen from the NVSS
- Simulations for a next-generation UHECR observatory
- Sensitivity of full-sky experiments to large scale cosmic ray anisotropies