Update on the correlation of the highest energy cosmic rays with nearby extragalactic matter
The Pierre Auger Collaboration: P. Abreu, M. Aglietta, E.J. Ahn, D., Allard, I. Allekotte, J. Allen, J. Alvarez Castillo, J. Alvarez-Mu\~niz, M., Ambrosio, A. Aminaei, L. Anchordoqui, S. Andringa, T. Anti\v{c}i\'c, A., Anzalone, C. Aramo, E. Arganda, K. Arisaka, F. Arqueros

TL;DR
This study updates the correlation analysis between ultra-high-energy cosmic rays and nearby extragalactic objects, showing increased data precision and a significant anisotropy in cosmic ray arrival directions, especially near Cen A.
Contribution
It provides an updated, more precise measurement of cosmic ray anisotropy and their correlation with nearby extragalactic objects using an expanded dataset.
Findings
Correlating fraction increased to 38% with more data.
Significant excess of cosmic rays near the radiogalaxy Cen A.
Autocorrelation function shows deviation from isotropy.
Abstract
Data collected by the Pierre Auger Observatory through 31 August 2007 showed evidence for anisotropy in the arrival directions of cosmic rays above the Greisen-Zatsepin-Kuz'min energy threshold, \nobreak{eV}. The anisotropy was measured by the fraction of arrival directions that are less than from the position of an active galactic nucleus within 75 Mpc (using the V\'eron-Cetty and V\'eron catalog). An updated measurement of this fraction is reported here using the arrival directions of cosmic rays recorded above the same energy threshold through 31 December 2009. The number of arrival directions has increased from 27 to 69, allowing a more precise measurement. The correlating fraction is , compared with expected for isotropic cosmic rays. This is down from the early estimate of . The enlarged set of…
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