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The IceCube collaboration has discovered a new, cosmic component of high-energy neutrinos.
doi:10.1016/j.astropartphys.2019.06.002
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M. Spurio, Constraints to a Galactic Component of the Ice Cube cosmic neutrino flux from ANTARES , Physical Review D 90 (10) (2014) 103004, arXiv: 1409.4552 · 2014
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The AMS-02 Collaboration, Precision Measurement of the Proton Flux in Primary Cosmic Rays from Rigidity 1 GV to 1.8 TV with the Alpha Magnetic Spectrometer on the International Space Station, Physical Review Letters 114 (17) (2015) 171103 · 2015
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The AMS-02 Collaboration, Precision Measurement of the Helium Flux in Primary Cosmic Rays of Rigidities 1.9 GV to 3 TV with the Alpha Magnetic Spectrometer on the International Space Station, Physical Review Letters 115 (21) (2015) 211101 · 2015
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A. Fedynitch, R. Engel, T. K. Gaisser, F. Riehn, T. Stanev, Calculation of conventional and prompt lepton fluxes at very high energy, in: European Physical Journal Web of Conferences, Vol. 99 of European Physical Journal Web of Conferences, 2015, p. 08001 · 2015
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S. Troitsky, Search for Galactic disk and halo components in the arrival directions of high-energy astrophysical neutrinos , JETP Letters 102 (12) (2015) 785–788, arXiv: 1511.01708 · 2015
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A. Neronov, D. V. Semikoz, Evidence for the Galactic contribution to the IceCube astrophysical neutrino flux , Astroparticle Physics 75 (2016) 60–63, arXiv: 1509.03522 · 2015
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A. Palladino, F. Vissani, The natural parameterization of cosmic neutrino oscillations , The European Physical Journal C 75 (9) (2015) 433 · 2015
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The IceCube Collaboration, Observation and characterization of a cosmic muon neutrino flux from the northern hemisphere using six years of IceCube data , The Astrophysical Journal 833 (1) (2016) 3 · 2016
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A. Palladino, M. Spurio, F. Vissani, On the IceCube spectral anomaly , Journal of Cosmology and Astroparticle Physics 2016 (12) (2016) 045–045, arXiv: 1610.07015 · 2016
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R. Gauld, J. Rojo, L. Rottoli, S. Sarkar, J. Talbert, The prompt atmospheric neutrino flux in the light of LHCb , Journal of High Energy Physics 2016 (2) · 2016
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F. Capozzi, E. Di Valentino, E. Lisi, A. Marrone, A. Melchiorri, A. Palazzo, Global constraints on absolute neutrino masses and their ordering , Physical Review D 95 (9) (2017) 096014 · 2017
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The IceCube, Fermi-LAT, Magic, Agile, Asas-Sn, HAWK, HESS, Integral, Kanata, Kiso, Kapteyn, L. Telescope, Subaru, Swift/NuSTAR, Veritas, V.-. Teams, Multimessenger observations of a flaring blazar coincident with high-energy neutrino IceCube-170922a , Science doi:10.1126/science.aat1378
2018
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A. Fedynitch, H. Dembinski, R. Engel, T. K. Gaisser, F. Riehn, T. Stanev, A state-of-the-art calculation of atmospheric lepton fluxes , in: Proceedings of 35th International Cosmic Ray Conference — PoS(ICRC2017), Vol. 301, SISSA Medialab, 2018, p. 1019 · 2018
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A. Bhattacharya, J. R. Cudell, Forward charm-production models and prompt neutrinos at IceCube , Journal of High Energy Physics 2018 (11) (2018) 150, arXiv: 1808.00293 · 2018
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A. Bhattacharya, R. Enberg, Y. S. Jeong, C. S. Kim, M. H. Reno, I. Sarcevic, A. Stasto, Prompt atmospheric neutrino fluxes: perturbative QCD models and nuclear effects , Journal of High Energy Physics 2016 (11) · 2016
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doi:10.3847/0004-637X/826/2/185
A. Palladino, F. Vissani, Extragalactic plus Galactic model for IceCube neutrino events , The Astrophysical Journal 826 (2) (2016) 185, arXiv: 1601.06678 · 2016
Cited alongside, same era.
doi:10.1088/1475-7516/2016/11/004
G. Pagliaroli, C. Evoli, F. L. Villante, Expectations for high energy diffuse galactic neutrinos for different cosmic ray distributions , Journal of Cosmology and Astroparticle Physics 2016 (11) (2016) 004–004, arXiv: 1606.04489 · 2016
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2017
Cited alongside, same era.
doi:10.1140/epjc/s10052-017-5273-z
A. Palladino, C. Mascaretti, F. Vissani, On the compatibility of the IceCube results with a universal neutrino spectrum , The European Physical Journal C 77 (10) (2017) 684 · 2017
Cited alongside, same era.
M. Benzke, M. V. Garzelli, B. A. Kniehl, G. Kramer, S. Moch, G. Sigl, Prompt neutrinos from atmospheric charm in the general-mass variable-flavor-number scheme, Journal of High Energy Physics 2017 (12) · 2017
Cited alongside, same era.
doi:10.1103/PhysRevD.96.123002
R. Laha, S. J. Brodsky, IC at IC: IceCube can constrain the intrinsic charm of the proton , Physical Review D 96 (12) (2017) 123002, arXiv: 1607.08240 · 2017
Cited alongside, same era.
doi:10.1103/PhysRevLett.113.101101
The IceCube Collaboration, Observation of High-Energy Astrophysical Neutrinos in Three Years of IceCube Data , Physical Review Letters 113 (10), arXiv: 1405.5303
Cited in the paper.
A. V. Giannini, V. P. Goncalves, F. S. Navarra, Intrinsic charm contribution to the prompt atmospheric neutrino flux , Physical Review D 98 (1) (2018) 014012, arXiv: 1803.01728 · 2018
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M. Tanabashi et al., Review of Particle Physics, Phys.Rev. D98 (3) (2018) 030001 · 2018
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doi:10.1103/PhysRevLett.121.121802
P. B. Denton, I. Tamborra, Invisible Neutrino Decay Resolves IceCube’s Track and Cascade Tension , Physical Review Letters 121 (12) (2018) 121802, arXiv: 1805.05950 · 2018
Later among the works it cites.
doi:10.1051/0004-6361/201832731
A. Palladino, W. Winter, A Multi-Component Model for the Observed Astrophysical Neutrinos , Astronomy & Astrophysics 615 (2018) A168, arXiv: 1801.07277 · 2018
Later among the works it cites.
doi:10.1088/1475-7516/2018/07/020
Y. Sui, P. S. B. Dev, A Combined Astrophysical and Dark Matter Interpretation of the IceCube HESE and Throughgoing Muon Events , Journal of Cosmology and Astroparticle Physics 2018 (07) (2018) 020–020, arXiv: 1804.04919 · 2018
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doi:10.22323/1.301.0981
C. Kopper, on behalf of the IceCube Collaboration, Observation of Astrophysical Neutrinos in Six Years of IceCube Data , in: Proceedings of 35th International Cosmic Ray Conference — PoS(ICRC2017), Vol. 301, SISSA Medialab, 2018, p. 981 · 2018
Later among the works it cites.
doi:10.1103/PhysRevD.99.032004
The IceCube Collaboration, Measurements using the inelasticity distribution of multi-TeV neutrino interactions in IceCube , Physical Review D 99 (3) (2019) 032004, arXiv: 1808.07629 · 2019
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