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We investigate the possibility that radio-bright active galactic nuclei (AGN) are responsible for the TeV--PeV neutrinos detected by IceCube.
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John F. Beacom, Nicole F. Bell, Dan Hooper, Sandip Pakvasa, and Thomas J. Weiler, “Decay of High-Energy Astrophysical Neutrinos,” Phys. Rev. Lett. 90
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Jia-Wei Luo and Bing Zhang, “Blazar - IceCube neutrino association revisited,” Phys. Rev. D101
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M. C. Gonzalez-Garcia, F. Halzen, and M. Maltoni, “Physics reach of high-energy and high-statistics icecube atmospheric neutrino data,” Phys. Rev. D71
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Matteo Agostini et al. (P-ONE), “The Pacific Ocean Neutrino Experiment,” Nature Astron. 4
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Matthew D. Kistler and John F. Beacom, “Guaranteed and Prospective Galactic TeV Neutrino Sources,” Phys. Rev. D74
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A. Achterberg et al. (IceCube), “First Year Performance of The IceCube Neutrino Telescope,” Astropart. Phys. 26
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John F. Beacom and Matthew D. Kistler, “Dissecting the Cygnus Region with TeV Gamma Rays and Neutrinos,” Phys. Rev. D75
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S. Adrian-Martinez et al. (KM3NeT), “Letter of intent for KM3NeT 2.0,” J. Phys. G43
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Erik Blaufuss, C. Kopper, and C. Haack (IceCube-Gen2), “The IceCube-Gen2 High Energy Array,” Proceedings, 34th International Cosmic Ray Conference (ICRC 2015): The Hague, The Netherlands, July 30-August 6, 2015 , PoS ICRC2015
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IceCube Collaboration (2021), “All-sky point-source IceCube data: years 2008-2018. Dataset. ,” 10.21234/sxvs-mt83
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IceCube Collaboration (2019), “All-sky search for point sources with seven years of IceCube data. IceCube Neutrino Observatory. Dataset.” 10.21234/exm3-tm26
2019
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M. G. Aartsen et al. (IceCube), “Detection of a particle shower at the Glashow resonance with IceCube,” Nature 591
2021
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