Please use this identifier to cite or link to this item: https://hdl.handle.net/2440/122737
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Type: Journal article
Title: Probing the origin of ultra-high-energy cosmic rays with neutrinos in the EeV energy range using the Pierre Auger Observatory
Author: Aab, A.
Abreu, P.
Aglietta, M.
Albuquerque, I.F.M.
Albury, J.M.
Allekotte, I.
Almela, A.
Castillo, J.A.
Alvarez-Muñiz, J.
Anastasi, G.A.
Anchordoqui, L.
Andrada, B.
Andringa, S.
Aramo, C.
Asorey, H.
Assis, P.
Avila, G.
Badescu, A.M.
Bakalova, A.
Balaceanu, A.
et al.
Citation: Journal of Cosmology and Astroparticle Physics, 2019; 2019(10):1-26
Publisher: IOP Science
Issue Date: 2019
ISSN: 1475-7516
1475-7516
Statement of
Responsibility: 
A. Aab ... Justin M. Albury ... Jose A. Bellido Caceres ... Bruce R. Dawson ... Gary C. Hill ... Bradley C. Manning ... Alan A. Watson ... et al.
Abstract: Neutrinos with energies above 1017 eV are detectable with the Surface Detector Array of the Pierre Auger Observatory. The identification is efficiently performed for neutrinos of all flavors interacting in the atmosphere at large zenith angles, as well as for Earth-skimming τ neutrinos with nearly tangential trajectories relative to the Earth. No neutrino candidates were found in ~ 14.7 years of data taken up to 31 August 2018. This leads to restrictive upper bounds on their flux. The 90% C.L. single-flavor limit to the diffuse flux of ultra-high-energy neutrinos with an Eν−2 spectrum in the energy range 1.0 × 1017 eV –2.5 × 1019 eV is E2 dNν/dEν < 4.4 × 10−9 GeV cm−2 s−1 sr−1, placing strong constraints on several models of neutrino production at EeV energies and on the properties of the sources of ultra-high-energy cosmic rays.
Keywords: Cosmic ray experiments; cosmological neutrinos; ultra high energy cosmic rays; neutrino astronomy
Rights: © 2019 IOP Publishing Ltd and Sissa Medialab.
DOI: 10.1088/1475-7516/2019/10/022
Grant ID: ARC
Published version: http://dx.doi.org/10.1088/1475-7516/2019/10/022
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