Please use this identifier to cite or link to this item: https://hdl.handle.net/2440/101017
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Type: Journal article
Title: Energy reconstruction methods in the IceCube neutrino telescope
Author: Aartsen, M.
Abbasi, R.
Ackermann, M.
Adams, J.
Aguilar, J.
Ahlers, M.
Altmann, D.
Arguelles, C.
Auffenberg, J.
Bai, X.
Baker, M.
Barwick, S.
Baum, V.
Bay, R.
Beatty, J.
Tjus, J.
Becker, K.
Benzvi, S.
Berghaus, P.
Berley, D.
et al.
Citation: Journal of Instrumentation, 2014; 9(3):P03009-1-P03009-36
Publisher: IOP Publishing for Sissa Medialab
Issue Date: 2014
ISSN: 1748-0221
1748-0221
Statement of
Responsibility: 
M.G. Aartsen ... G.C. Hill ... B. Whelan ... et al. (IceCube Collaboration)
Abstract: Accurate measurement of neutrino energies is essential to many of the scientific goals of large-volume neutrino telescopes. The fundamental observable in such detectors is the Cherenkov light produced by the transit through a medium of charged particles created in neutrino interactions. The amount of light emitted is proportional to the deposited energy, which is approximately equal to the neutrino energy for ne and nm charged-current interactions and can be used to set a lower bound on neutrino energies and to measure neutrino spectra statistically in other channels. Here we describe methods and performance of reconstructing charged-particle energies and topologies from the observed Cherenkov light yield, including techniques to measure the energies of uncontained muon tracks, achieving average uncertainties in electromagnetic-equivalent deposited energy of 15% above 10 TeV.
Keywords: Cherenkov detectors; dE/dx detectors; Neutrino detectors; Performance of High Energy Physics Detectors
Rights: © 2014 IOP Publishing Ltd and Sissa Medialab srl
DOI: 10.1088/1748-0221/9/03/P03009
Grant ID: ARC
Published version: http://dx.doi.org/10.1088/1748-0221/9/03/p03009
Appears in Collections:Aurora harvest 3
Chemistry and Physics publications

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