IFLP   13074
INSTITUTO DE FISICA LA PLATA
Unidad Ejecutora - UE
artículos
Título:
Measurement of the cosmic-ray energy spectrum above 2.5 × 10 18     eV using the Pierre Auger Observatory
Autor/es:
THE PIERRE AUGER COLLABORATION, ( ..., M. I. MICHELETTI, THE LIST IS IN ALPHABETIC ORDER... ); THE PIERRE AUGER COLLABORATION, ( ..., M. I. MICHELETTI, THE LIST IS IN ALPHABETIC ORDER... )
Revista:
PHYSICAL REVIEW D
Editorial:
AMER PHYSICAL SOC
Referencias:
Lugar: New York; Año: 2020 p. 62005 - 62005
ISSN:
1550-7998
Resumen:
We report a measurement of the energy spectrum of cosmic rays for energies above 2.5×10^18  eV based on 215,030 events recorded with zenith angles below 60°. A key feature of the work is that the estimates of the energies are independent of assumptions about the unknown hadronic physics or of the primary mass composition. The measurement is the most precise made hitherto with the accumulated exposure being so large that the measurements of the flux are dominated by systematic uncertainties except at energies above 5×10^19  eV. The principal conclusions are(1) The flattening of the spectrum near 5×10^18  eV, the so-called ?ankle,? is confirmed.(2) The steepening of the spectrum at around 5×10^19  eV is confirmed.(3) A new feature has been identified in the spectrum: in the region above the ankle the spectral index γ of the particle flux (∝E−γ) changes from 2.51±0.03 (stat)±0.05 (syst) to 3.05±0.05 (stat)±0.10 (syst) before changing sharply to 5.1±0.3 (stat)±0.1 (syst) above 5×10^19  eV.(4) No evidence for any dependence of the spectrum on declination has been found other than a mild excess from the Southern Hemisphere that is consistent with the anisotropy observed above 8×10^18  eV.