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Astrophysical objects such as active-galactic nuclei (AGN) and gamma-ray bursts (GRBs) can be sources of high energy, astrophysical neutrinos.
F.W. Stecker, C. Done, M.H. Salamon, P. Sommers, High-Energy Neutrinos from Active Galactic Nuclei
1991
Earlier work this paper cites.
E. Waxman, J. Bahcall, High Energy Neutrinos from Cosmological Gamma-Ray Burst Fireballs
1997
Earlier work this paper cites.
J.P. Rachen, P. Mészáros, Photohadronic neutrinos from transients in astrophysical sources
1998
Earlier work this paper cites.
H. Athar, M. Jezabek, O. Yasuda, Effects of neutrino mixing on high-energy cosmic neutrino flux
2000
Earlier work this paper cites.
C. Schuster, M. Pohl, R. Schlickeiser, Neutrinos from active galactic nuclei as a diagnostic tool
2002
Earlier work this paper cites.
J. Beacom, N. Bell, D. Hooper, S. Pakvasa, T. Weiler, Measuring Flavor Ratios of High-Energy Astrophysical Neutrinos
2003
Cited alongside, same era.
IceCube Collaboration, Sensitivity of the IceCube Detector to Astrophysical Sources of High Energy Muon Neutrinos
2004
Cited alongside, same era.
T. Kashti, E. Waxman, Astrophysical Neutrinos: Flavor Ratios Depend on Energy
2005
Cited alongside, same era.
D.F. Cowen for the IceCube Collaboration, Tau Neutrinos in IceCube
2007
Cited alongside, same era.
2008
Cited alongside, same era.
A. Donini, O. Yasuda, Signatures of sterile neutrino mixing in high-energy cosmic neutrino flux
2008
Later among the works it cites.
P. Baerwald, S. Hümmer, W. Winter, Magnetic Field and Flavor Effects on the Gamma-Ray Burst Neutrino Flux
2010
Later among the works it cites.
2012
Later among the works it cites.
2012
Later among the works it cites.
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