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Probing the origin of cosmic-rays with extremely high energy neutrinos using the IceCube Observatory

Authors :
M. J. Larson
M. Day
T. Stezelberger
E. Jacobi
E. A. Strahler
A. R. Fazely
T. Waldenmaier
C. Pfendner
G. C. Hill
Tyce DeYoung
A. M. Brown
K. Hultqvist
J. Lünemann
C. Walck
A. Schukraft
N. Whitehorn
S. Toscano
M. Lesiak-Bzdak
J. Daughhetee
A. Olivas
S. Schoenen
M. Casier
Marcos Santander
Jenni Adams
T. Glüsenkamp
Segev BenZvi
M. Ribordy
K. H. Becker
M. Vraeghe
N. Van Eijndhoven
Kael Hanson
K. D. Hoffman
S. Hussain
C. Bohm
M. Dunkman
G. Kroll
X. Bai
H. P. Bretz
M. W.E. Smith
K. Rawlins
D. Seckel
J. Eisch
S. Odrowski
M. Wallraff
A. Ishihara
Steven W. Barwick
C. De Clercq
A. Schönwald
K. D. de Vries
A. Fedynitch
S. Flis
K. Krings
C. Sheremata
L. Gerhardt
G. Binder
J. C. Groh
M. Vehring
M. Rameez
M. N. Tobin
A. H. Cruz Silva
D. Pieloth
Teresa Montaruli
M. Richman
L. Gladstone
T. Kuwabara
K. Jero
P. B. Price
P. Gretskov
K. Helbing
K. Wiebe
Juanan Aguilar
L. Brayeur
H. Niederhausen
Wolfgang Rhode
G. Kohnen
D. Grant
C. Wendt
J. J. Beatty
J. Jacobsen
W. Huelsnitz
T. Fischer-Wasels
J. Miller
V. Baum
P. Redl
J. Becker Tjus
D. Bindig
M. Bissok
A. Christov
Carsten Rott
S. C. Nowicki
J. Kläs
A. Stasik
E. Pinat
J. G. Gonzalez
D. J. Koskinen
A. Tamburro
A. Stößl
Reina H. Maruyama
Carlos Arguelles
Thomas Meures
M. Leuermann
I. Taboada
J. L. Kelley
J. A. Goodman
D. J. Boersma
N. A. Stanisha
S. R. Klein
D. Chirkin
A. Karle
L. Rädel
L. Köpke
G. T. Przybylski
M. Wellons
S. Coenders
S. Yoshida
P. A. Toale
Dariusz Gora
L. Schulte
J. S. Gallagher
M. Merck
F. McNally
J. H. Köhne
J. Madsen
G. M. Spiczak
H. Landsman
R. Reimann
P. A. Evenson
O. Fadiran
U. Naumann
S. Zierke
M. Usner
J. Kiryluk
K. Woschnagg
Sofia Vallecorsa
M. Kauer
G. Yodh
L. Mohrmann
D. Z. Besson
D. Bose
M. Zoll
X. W. Xu
S. Schöneberg
D. Heinen
K. Clark
T. Karg
B. Kaminsky
R. C. Bay
J. Casey
C. H. Wiebusch
D. Heereman
A. Kriesten
J. Blumenthal
Oscar Macias
S. Ter-Antonyan
J. Ziemann
G. W. Sullivan
P. Zarzhitsky
Rezo Shanidze
M. Labare
R. G. Stokstad
Elisa Bernardini
Stephanie Hickford
A. Obertacke
E. Unger
Y. Sestayo
Allan Hallgren
J. Feintzeig
H. Taavola
P. Berghaus
O. Schulz
G. S. Japaridze
A. Goldschmidt
B. Ruzybayev
Hermann Kolanoski
K. Jagielski
J. Auffenberg
G. Tešić
A. Haj Ismail
S. Tilav
J. Van Santen
T. Feusels
J. Posselt
M. G. Aartsen
Elisa Resconi
J. Leute
M. Krasberg
B. Riedel
R. Eagan
H. Wissing
Subir Sarkar
R. Bruijn
P. O. Hulth
R. Hellauer
Olga Botner
M. Baker
A. Homeier
S. Cohen
G. Golup
L. Paul
Markus Ahlers
S. Böser
F. Clevermann
T. Ruhe
S. De Ridder
R. Nahnhauer
M. Wolf
M. Stamatikos
D. Altmann
A. Groß
J. P. Yanez
S. Westerhoff
C. Ha
E. Middell
T. R. Wood
A. Omairat
P. Hallen
M. Voge
M. Danninger
D. T. Grandmont
D. L. Xu
R. Hoffmann
Christian Spiering
S. Seunarine
C. Finley
T. Schmidt
D. Berley
Giorgio Maggi
S. M. Saba
J. C. Davis
K. Hoshina
Ch Weaver
M. Kowalski
A. Franckowiak
J. P. Rodrigues
Markus Ackermann
P. Desiati
C. Kopper
B. Eberhardt
B. Christy
K. Mase
S. Kopper
H. S. Matis
Francis Halzen
E. Blaufuss
N. Kurahashi
Todor Stanev
J. A. Pepper
H. G. Sander
Thomas K. Gaisser
S. Euler
D. R. Nygren
D. R. Williams
Alexander Kappes
K. Schatto
D. Ryckbosch
C. Pérez De Los Heros
D. F. Cowen
F. Scheriau
M. Schmitz
S. Miarecki
J. C. Díaz-Vélez
R. Ström
O. Jlelati
A. Bernhard
A. Tepe
J. Kunnen
K. Meagher
K. Filimonov
A. O'Murchadha
N. Milke
R. Morse
Rasha Abbasi
A. Van Overloop
K. Frantzen
T. Fuchs
D. Soldin
Physics
Elementary Particle Physics
Aguilar Sanchez, Juan
Christov, Asen
Montaruli, Teresa
Rameez, Mohamed
Vallecorsa, Sofia
Source :
Physical Review D-Particles Fields Gravitation and Cosmology, Physical review / D 88(11), 112008 (2013). doi:10.1103/PhysRevD.88.112008, Physical Review. D, Vol. 88, No 11 (2013) P. 112008, PHYSICAL REVIEW D
Publication Year :
2013

Abstract

We have searched for extremely high energy neutrinos using data taken with the IceCube detector between May 2010 and May 2012. Two neutrino induced particle shower events with energies around 1 PeV were observed, as reported previously. In this work, we investigate whether these events could originate from cosmogenic neutrinos produced in the interactions of ultra-high energy cosmic-rays with ambient photons while propagating through intergalactic space. Exploiting IceCube's large exposure for extremely high energy neutrinos and the lack of observed events above 100 PeV, we can rule out the corresponding models at more than 90% confidence level. The model independent quasi-differential 90% CL upper limit, which amounts to $E^2 \phi_{\nu_e + \nu_\mu + \nu_\tau} = 1.2 \times 10^{-7}$ GeV cm$^{-2}$ s$^{-1}$ sr$^{-1}$ at 1 EeV, provides the most stringent constraint in the energy range from 10 PeV to 10 EeV. Our observation disfavors strong cosmological evolution of the highest energy cosmic ray sources such as the Fanaroff-Riley type II class of radio galaxies.<br />Comment: A follow-up analysis to the report published in PRL 111 (2013) 021103. 15 pages, 9 figures, 5 tables, the version accepted for publication in Physical Review D

Details

Language :
English
ISSN :
15502368 and 15507998
Volume :
88
Issue :
11
Database :
OpenAIRE
Journal :
Physical Review D
Accession number :
edsair.doi.dedup.....9c19d4b94f41d86d4e2cfd8716f875be