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All-particle cosmic ray energy spectrum measured with 26 IceTop stations

Authors :
Donglian Xu
Carsten Rott
J. Miller
M. Bissok
C. Pérez de los Heros
Xianwu Xu
C. Bohm
M. L. Benabderrahmane
M. Stüer
N. Milke
George Japaridze
K. Wiebe
R. Hellauer
Todor Stanev
M. W. E. Smith
S. Seunarine
I. Taboada
S. Flis
A. Haj Ismail
C. Wendt
F. Descamps
Markus Ahlers
O. Engdegård
K.-H. Becker
D. Rutledge
S. Odrowski
Larissa Paul
T. Abu-Zayyad
Juanan Aguilar
Takao Kuwabara
J. Dreyer
Ch. Weaver
Subir Sarkar
Segev BenZvi
Y. Abdou
Benedikt Riedel
Tim Ruhe
M. Walter
B. Christy
Seth M. Cohen
Spencer Klein
Peter Mészáros
J. A. Goodman
Matt Dunkman
T. Fischer-Wasels
A. Schukraft
K. Laihem
Chad Finley
R. Franke
C. Walck
S. H. Seo
A. Ishihara
K. Rawlins
M. Labare
D. Bose
B. Ruzybayev
E. Jacobi
James Madsen
Thomas K. Gaisser
G. B. Yodh
D. Z. Besson
Thomas Meures
E. A. Strahler
Kara Hoffman
J. Feintzeig
Dariusz Gora
A. Tamburro
Dirk Ryckbosch
M. Merck
J. P. Rodrigues
T. Stezelberger
Stijn Buitink
S. Westerhoff
A. H. Cruz Silva
Elisa Resconi
Thorsten Glusenkamp
O. Schulz
Anatoli Fedynitch
Teresa Montaruli
M. V. D'Agostino
J. Berdermann
M. Richman
K. Beattie
M. Vehring
D. F. Cowen
Nathan Whitehorn
A. Silvestri
Samvel Ter-Antonyan
J. Kiryluk
J. Lünemann
C. Ha
P. B. Price
Karen S. Caballero-Mora
Wolfgang Rhode
L. Schulte
R. J. Lauer
Albrecht Karle
A. Schultes
R. Morse
Christian Spiering
R. C. Bay
H. S. Matis
A. Van Overloop
L. Brayeur
C. De Clercq
T. Degner
T. O. B. Schmidt
Karen Andeen
P. Berghaus
Juan Carlos Diaz-Velez
S. Böser
A. Schönwald
F. Clevermann
T. R. Wood
J. J. Beatty
S. Euler
B. Hoffmann
H. Taavola
David A. Williams
Markus Ackermann
S. W. Barwick
M. Scheel
E. Blaufuss
J. C. Davis
A. Homeier
Kurt Woschnagg
Y. Sestayo
J. Posselt
Matthias Wolf
Rasha Abbasi
S. Tilav
K. Han
D. Altmann
H. G. Sander
K. Hoshina
Paul Evenson
Jon Dumm
T. Waldenmaier
M. Kowalski
R. Nahnhauer
Christopher Wiebusch
M. Danninger
J. L. Bazo Alba
A. Stößl
Simona Toscano
K. Meagher
Damian Pieloth
W. Huelsnitz
Chun Xu
Reina H. Maruyama
A. M. Brown
E. Middell
Elisa Bernardini
J. Daughhetee
Francis Halzen
M. Ribordy
R. W. Ellsworth
J. P. Yanez
S. M. Movit
M. Stamatikos
Glenn Spiczak
P. O. Hulth
J. Eisch
P. Zarzhitsky
T. Feusels
F. Rothmaier
G. de Vries-Uiterweerd
Jenni Adams
Dmitry Chirkin
J. E. Jacobsen
Aongus O'Murchadha
Marcos Santander
O. Fadiran
G. W. Sullivan
K. Hultqvist
P. Heimann
L. Gerhardt
L. Köpke
B. Semburg
Alexander Kappes
Darren Grant
D. Berley
G. C. Hill
J.-H. Köhne
H. Wissing
D. J. Boersma
S. Hickford
Michael J. Baker
Xinhua Bai
S. Bechet
Sarah Nowicki
R. G. Stokstad
L. Gladstone
R. Wischnewski
Dirk Heinen
A. Goldschmidt
J. Auffenberg
D. Heereman
D. Seckel
S. Miarecki
Naoko Kurahashi
A. R. Fazely
Tyce DeYoung
Daniel Bindig
P. Redl
D. Bertrand
P. A. Toale
M. Olivo
K. Helbing
N. van Eijndhoven
U. Naumann
Michael S. Bell
Kirill Filimonov
S. Klepser
J. K. Becker
G. Kroll
M. Wallraff
M. Voge
M. Gurtner
M. Krasberg
M. Schunck
J. C. Gallagher
S. Yoshida
M. Casier
Allan Hallgren
J. van Santen
S. Hussain
Sandro Kopper
D. J. Koskinen
Kael Hanson
J. Kunnen
Axel Groß
Timo Karg
J. W. Nam
S. Schöneberg
D. R. Nygren
Paolo Desiati
S. Grullon
M. J. Carson
M. J. Larson
Fabian Kislat
A. Franckowiak
J. Blumenthal
K. Mase
Olga Botner
V. Baum
Henrik J. Johansson
S. Panknin
K. Schatto
G. Kohnen
R. Ström
Hermann Kolanoski
D. Tosi
H. Landsman
Gerald Przybylski
M. Zoll
A. Olivas
R. Wasserman
Aguilar Sanchez, Juan
Montaruli, Teresa
Elementary Particle Physics
Source :
Astropart.Phys., Astroparticle physics 44, 40-58 (2013). doi:10.1016/j.astropartphys.2013.01.016, Astroparticle Physics, Vol. 44 (2013) pp. 40-58
Publication Year :
2012
Publisher :
arXiv, 2012.

Abstract

Astroparticle physics 44, 40 - 58 (2013). doi:10.1016/j.astropartphys.2013.01.016<br />We report on a measurement of the cosmic ray energy spectrum with the IceTop air shower array, the surface component of the IceCube Neutrino Observatory at the South Pole. The data used in this analysis were taken between June and October, 2007, with 26 surface stations operational at that time, corresponding to about one third of the final array. The fiducial area used in this analysis was 0.122 km2. The analysis investigated the energy spectrum from 1 to 100 PeV measured for three different zenith angle ranges between 0° and 46°. Because of the isotropy of cosmic rays in this energy range the spectra from all zenith angle intervals have to agree. The cosmic-ray energy spectrum was determined under different assumptions on the primary mass composition. Good agreement of spectra in the three zenith angle ranges was found for the assumption of pure proton and a simple two-component model. For zenith angles θ < 30°, where the mass dependence is smallest, the knee in the cosmic ray energy spectrum was observed at about 4 PeV, with a spectral index above the knee of about −3.1. Moreover, an indication of a flattening of the spectrum above 22 PeV was observed.<br />Published by Elsevier Science, Amsterdam [u.a.]

Details

ISSN :
09276505
Database :
OpenAIRE
Journal :
Astropart.Phys., Astroparticle physics 44, 40-58 (2013). doi:10.1016/j.astropartphys.2013.01.016, Astroparticle Physics, Vol. 44 (2013) pp. 40-58
Accession number :
edsair.doi.dedup.....a28efdfba94a8f5678a2a8f6e5bebcc3
Full Text :
https://doi.org/10.48550/arxiv.1202.3039