Arrival Direction Studies of Ultra-High-Energy Cosmic Rays Detected by the Pierre Auger Observatory
Abstract
The origin of ultra-high-energy cosmic rays remains an enigmatic phenomenon, and studies about their arrival direction play an important role in the attempt to solve this issue. The Pierre Auger Observatory, located in Argentina, stands as the world's largest cosmic ray observatory exhibiting an effective area spanning 3,000 km² and an accumulated exposure of 135,000 km² yr sr over 19 years of operation. These studies are performed using the events reconstructed with the surface detector of the Observatory over the entire field of view which covers about 85% of the sky. To analyze large angular scales in the distribution of arrival directions, we employ a combined Fourier analysis in right ascension and azimuth above the full trigger efficiency. The “east–west” method is used for energies at which the efficiency is small. For studies on small and intermediate angular scales, our approach involves blind searches for overdensities, investigations around the Centaurus region, and likelihood analyses using astrophysical catalogs. At large scales, we observe a first-harmonic modulation in right ascension above 8 EeV with a significance of 6.9𝜎. This suggests an extragalactic origin above this energy. Above ~ 40 EeV the intermediate-angular-scale analyses reveal an excess near Cen A with a significance of 4.0𝜎, while catalog-based searches yield a 3.8𝜎 signal from nearby starburst galaxies. These results provide crucial insights into the origins and distribution of ultra-high-energy cosmic rays, advancing our understanding of cosmic ray astrophysics and underscoring the unique capabilities of the Pierre Auger Observatory in unraveling cosmic mysteries. Presented on behalf of the Pierre Auger Collaboration