On the Global Anisotropy of Cosmic Ray Data above
arXiv:astro-ph/0110045 · doi:10.1088/1475-7516/2003/07/007
Abstract
The distribution of arrival directions of ultra-high energy cosmic rays may yield clues to their mysterious origin. We introduce a method of {\it invariant statistics} to analyze cosmic ray data which eliminates coordinate-dependent artifacts. When combined with maximum likelihood analysis, the method is capable of quantifying deviations of the distribution from isotropy with high reliability. We test our method against published AGASA events with energies above eV. Angular cuts from observational limitations are taken into account. A model based on the Fisher distribution reveals the rotation of the Earth with the axis along the direction () in coordinates, which is within of the equatorial north pole. Global anisotropy of the data, if any, hinges on finer understanding of detector acceptance than what is available from the published literature.
10 pages, 3 figures, published version
References in corpus (5)
- Cosmic Ray Anisotropy Analysis with a Full-Sky Observatory
- Cluster Analysis of Extremely High Energy Cosmic Rays in the Northern Sky
- GZK Violation - a Tempest in a (Magnetic) Teapot?
- Correlation of Ultra High Energy Cosmic Rays with Compact Radio Loud Quasars
- Anisotropy at the end of the cosmic ray spectrum?