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Title: Differential limit on the extremely-high-energy cosmic neutrino flux in the presence of astrophysical background from nine years of IceCube data

Journal Article · · Physical Review D
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We report a quasidifferential upper limit on the extremely-high-energy (EHE) neutrino flux above 5×106 GeV based on an analysis of nine years of IceCube data. The astrophysical neutrino flux measured by IceCube extends to PeV energies, and it is a background flux when searching for an independent signal flux at higher energies, such as the cosmogenic neutrino signal. We have developed a new method to place robust limits on the EHE neutrino flux in the presence of an astrophysical background, whose spectrum has yet to be understood with high precision at PeV energies. A distinct event with a deposited energy above 106 GeV was found in the new two-year sample, in addition to the one event previously found in the seven-year EHE neutrino search. These two events represent a neutrino flux that is incompatible with predictions for a cosmogenic neutrino flux and are considered to be an astrophysical background in the current study. The obtained limit is the most stringent to date in the energy range between 5×106 and 2×1010 GeV. This result constrains neutrino models predicting a three-flavor neutrino flux of E$$2\atop{ν}$$φν$$_e$$+ν$$_μ$$+ν$$_τ$$≃2×10-8 GeV/cm2 sec sr at 109 GeV. Finally, a significant part of the parameter space for EHE neutrino production scenarios assuming a proton-dominated composition of ultra-high-energy cosmic rays is disfavored independently of uncertain models of the extragalactic background light which previous IceCube constraints partially relied on.

Research Organization:
Lawrence Berkeley National Laboratory (LBNL), Berkeley, CA (United States)
Sponsoring Organization:
USDOE Office of Science (SC)
Contributing Organization:
IceCube Collaboration
Grant/Contract Number:
AC02-05CH11231
OSTI ID:
1478354
Alternate ID(s):
OSTI ID: 1546328
Journal Information:
Physical Review D, Vol. 98, Issue 6; ISSN 2470-0010
Publisher:
American Physical Society (APS)Copyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 114 works
Citation information provided by
Web of Science

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Cited By (23)

The Giant Radio Array for Neutrino Detection (GRAND): Science and design journal August 2019
Probing the origin of ultra-high-energy cosmic rays with neutrinos in the EeV energy range using the Pierre Auger Observatory journal October 2019
Reconstructing the cosmic-ray energy from the radio signal measured in one single station journal October 2019
Limits on point-like sources of ultra-high-energy neutrinos with the Pierre Auger Observatory journal November 2019
Studying low x structure function models with astrophysical tau neutrinos journal October 2019
NuRadioMC: Simulating the radio emission of neutrinos from interaction to detector text January 2020
Open Questions in Cosmic-Ray Research at Ultrahigh Energies journal June 2019
Ultrahigh-energy Cosmic-Ray Interactions as the Origin of Very High-energy γ -Rays from BL Lacertae Objects journal February 2020
Probing the origin of ultra-high-energy cosmic rays with neutrinos in the EeV energy range using the Pierre Auger Observatory text January 2019
Reconstructing the cosmic-ray energy from the radio signal measured in one single station text January 2019
NuRadioMC: simulating the radio emission of neutrinos from interaction to detector journal January 2020
Open Questions in Cosmic-Ray Research at Ultrahigh Energies text January 2019
Determining the fraction of cosmic-ray protons at ultra-high energies with cosmogenic neutrinos text January 2019
Open Questions in Cosmic-Ray Research at Ultrahigh Energies text January 2019
The Giant Radio Array for Neutrino Detection (GRAND): Science and Design text January 2018
Ultrahigh-energy cosmic-ray nuclei and neutrinos from engine-driven supernovae text January 2018
Determining the fraction of cosmic-ray protons at ultra-high energies with cosmogenic neutrinos text January 2019
Constraints on the ultra-high energy cosmic neutrino flux from the fourth flight of ANITA text January 2019
Can the ANITA anomalous events be due to new physics? text January 2019
The Inflaton Portal to a Highly decoupled EeV Dark Matter Particle text January 2019
Consistent Lorentz violation features from near-TeV IceCube neutrinos text January 2019
Probing the origin of ultra-high-energy cosmic rays with neutrinos in the EeV energy range using the Pierre Auger Observatory text January 2019
Anomalous ANITA air shower events and tau decays text January 2019


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