Please use this identifier to cite or link to this item: https://hdl.handle.net/2440/101018
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Type: Journal article
Title: Evidence for astrophysical muon neutrinos from the northern sky with IceCube
Author: Aartsen, M.
Abraham, K.
Ackermann, M.
Adams, J.
Aguilar, J.
Ahlers, M.
Ahrens, M.
Altmann, D.
Anderson, T.
Archinger, M.
Arguelles, C.
Arlen, T.
Auffenberg, J.
Bai, X.
Barwick, S.
Baum, V.
Bay, R.
Beatty, J.
Tjus, J.
Becker, K.
et al.
Citation: Physical Review Letters, 2015; 115(8):081102-1-081102-7
Publisher: American Physical Society
Issue Date: 2015
ISSN: 0031-9007
1079-7114
Statement of
Responsibility: 
M. G. Aartsen ... G. C. Hill ... S. Robertson ... B. J. Whelan ... et al. (IceCube Collaboration)
Abstract: Results from the IceCube Neutrino Observatory have recently provided compelling evidence for the existence of a high energy astrophysical neutrino flux utilizing a dominantly Southern Hemisphere data set consisting primarily of νe and ντ charged-current and neutral-current (cascade) neutrino interactions. In the analysis presented here, a data sample of approximately 35 000 muon neutrinos from the Northern sky is extracted from data taken during 659.5 days of live time recorded between May 2010 and May 2012. While this sample is composed primarily of neutrinos produced by cosmic ray interactions in Earth’s atmosphere, the highest energy events are inconsistent with a hypothesis of solely terrestrial origin at 3.7σ significance. These neutrinos can, however, be explained by an astrophysical flux per neutrino flavor at a level of Φ(Eν)=9.9+3.9−3.4×10−19  GeV−1 cm−2 sr−1 s−1(Eν/100  TeV)−2, consistent with IceCube’s Southern-Hemisphere-dominated result. Additionally, a fit for an astrophysical flux with an arbitrary spectral index is performed. We find a spectral index of 2.2+0.2−0.2, which is also in good agreement with the Southern Hemisphere result.
Keywords: IceCube Collaboration
Rights: © 2015 American Physical Society
DOI: 10.1103/PhysRevLett.115.081102
Grant ID: ARC
Published version: http://dx.doi.org/10.1103/physrevlett.115.081102
Appears in Collections:Aurora harvest 3
Chemistry and Physics publications

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