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Title: Constraints on Ultrahigh-Energy Cosmic-Ray Sources from a Search for Neutrinos above 10 PeV with IceCube

Journal Article · · Physical Review Letters
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In this study, we report constraints on the sources of ultra-high-energy cosmic ray (UHECR) above 109 GeV, based on an analysis of seven years of IceCube data. This analysis efficiently selects very high energy neutrino-induced events which have deposited energies from 5 X 105 GeV to above 1011 GeV. Two neutrino-induced events with an estimated deposited energy of (2.6±0.3)×106 GeV, the highest neutrino energies observed so far, and (7.7±2.0)×105 GeV were detected. The atmospheric background-only hypothesis of detecting these events is rejected at 3.6σ. The hypothesis that the observed events are of cosmogenic origin is also rejected at > 99% CL because of the limited deposited energy and the non-observation of events at higher energy, while their observation is consistent with an astrophysical origin. Our limits on cosmogenic neutrino fluxes disfavor the UHECR sources having cosmological evolution stronger than the star formation rate, e.g., active galactic nuclei and $$γ$$-ray bursts, assuming proton-dominated UHECRs. Constraints on UHECR sources including mixed and heavy UHECR compositions are obtained for models of neutrino production within UHECR sources. Our limit disfavors a significant part of parameter space for active galactic nuclei and new-born pulsar models.

Research Organization:
Lawrence Berkeley National Laboratory (LBNL), Berkeley, CA (United States). National Energy Research Scientific Computing Center (NERSC)
Sponsoring Organization:
USDOE Office of Science (SC)
Contributing Organization:
IceCube Collaboration
OSTI ID:
1544416
Alternate ID(s):
OSTI ID: 1334692
Journal Information:
Physical Review Letters, Vol. 117, Issue 24; ISSN 0031-9007
Publisher:
American Physical Society (APS)Copyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 92 works
Citation information provided by
Web of Science

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A Combined Maximum-Likelihood Analysis of the High-Energy Astrophysical Neutrino Flux Measured with IceCube text January 2015
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The differential cosmic ray energy flux in the light of an ultrarelativistic generalized Lorentzian thermodynamics journal January 2018
The Giant Radio Array for Neutrino Detection (GRAND): Science and design journal August 2019
Linking high-energy cosmic particles by black-hole jets embedded in large-scale structures journal January 2018
Cosmic ray and neutrino emission from gamma-ray bursts with a nuclear cascade journal March 2018
Probing the origin of ultra-high-energy cosmic rays with neutrinos in the EeV energy range using the Pierre Auger Observatory journal October 2019
Ultrahigh energy cosmic rays from nearby starburst galaxies journal April 2018
High-energy neutrino flux from individual blazar flares journal September 2019
Studying low x structure function models with astrophysical tau neutrinos journal October 2019
Time delay of timelike particles in gravitational lensing of the Schwarzschild spacetime journal December 2019
Multi-PeV Signals from a New Astrophysical Neutrino Flux beyond the Glashow Resonance journal June 2018
Multimessenger observations of a flaring blazar coincident with high-energy neutrino IceCube-170922A journal July 2018
NuRadioReco: a reconstruction framework for radio neutrino detectors journal June 2019
Differential limit on the extremely-high-energy cosmic neutrino flux in the presence of astrophysical background from nine years of IceCube data text January 2018
Neutrino vertex reconstruction with in-ice radio detectors using surface reflections and implications for the neutrino energy resolution text January 2019
Blazar Flares as an Origin of High-energy Cosmic Neutrinos? journal September 2018
On the Common Origin of Cosmic Rays across the Ankle and Diffuse Neutrinos at the Highest Energies from Low-luminosity Gamma-Ray Bursts journal February 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
Cosmic Ray and Neutrino Emission from Gamma-Ray Bursts with a Nuclear Cascade text January 2018
On the common origin of cosmic rays across the ankle and diffuse neutrinos at the highest energies from low-luminosity Gamma-Ray Bursts text January 2018
A Multimessenger Picture of the Flaring Blazar TXS 0506+056: Implications for High-energy Neutrino Emission and Cosmic-Ray Acceleration journal August 2018
NuRadioReco: a reconstruction framework for radio neutrino detectors text January 2019
Cosmic-Ray and Neutrino Emission from Gamma-Ray Bursts with a Nuclear Cascade text January 2017
Cosmic ray and neutrino emission from gamma-ray bursts with a nuclear cascade text January 2018
Neutrino vertex reconstruction with in-ice radio detectors using surface reflections and implications for the neutrino energy resolution journal November 2019
Linking High-Energy Cosmic Particles by Black-Hole Jets Embedded in Large-Scale Structures text January 2017
Cosmic-Ray and Neutrino Emission from Gamma-Ray Bursts with a Nuclear Cascade text January 2017
Blazar Flares as an Origin of High-Energy Cosmic Neutrinos? text January 2018
The Giant Radio Array for Neutrino Detection (GRAND): Science and Design text January 2018
NuRadioReco: A reconstruction framework for radio neutrino detectors text January 2019
Explaining the ANITA Anomaly with Inelastic Boosted Dark Matter text January 2019
High energy neutrino flux from individual blazar flares 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

Figures / Tables (6)