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Astron. Astrophys. 359, 682-694 (2000)
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Energy spectrum and chemical composition of cosmic rays between 0.3 and 10 PeV determined from the Cherenkov-light and charged-particle distributions in air showers
The HEGRA-Collaboration F. Arqueros 3,
J.A. Barrio 2,3,
K. Bernlöhr * 1,
H. Bojahr 6,
I. Calle 3,
J.L. Contreras 3,
J. Cortina 3,2,
T. Deckers 5,
S. Denninghoff 2,
V. Fonseca 3,
J. Gebauer 2,
J.C. González 3,
V. Haustein ** 4,
G. Heinzelmann 4,
H. Hohl 6,
D. Horns 4,
A. Ibarra 3,
M. Kestel 2,
O. Kirstein 5,
H. Kornmayer 2,
D. Kranich 2,
H. Krawczynski 1,4,
A. Lindner 4,
E. Lorenz 2,
N. Magnussen 6,
H. Meyer 6,
R. Mirzoyan 2,
A. Moralejo 3,
L. Padilla 3,
D. Petry *** 2,6,
R. Plaga 2,
J. Prahl 4,
G. Rauterberg 5,
W. Rhode 6,
A. Röhring 4,
M. Samorski 5,
D. Schmele 4,
F. Schröder 6,
W. Stamm 5,
B. Wiebel-Sooth 6,
M. Willmer 5 and
W. Wittek 2
1 Max-Planck-Institut für Kernphysik, Postfach 103980, 69029 Heidelberg, Germany
2 Max-Planck-Institut für Physik, Föhringer Ring 6, 80805 München, Germany
3 Universidad Complutense, Facultad de Ciencias Físicas, Ciudad Universitaria, 28040 Madrid, Spain
4 Universität Hamburg, II. Institut für Experimentalphysik, Luruper Chaussee 149, 22761 Hamburg, Germany
5 Universität Kiel, Institut für Experimentelle und Angewandte Physik, Leibnizstrasse 15, 24118 Kiel, Germany
6 Universität Wuppertal, Fachbereich Physik, Gaussstrasse 20, 42097 Wuppertal, Germany
Received 6 April 1999 / Accepted 17 August 1999
Abstract
Measurements of the lateral distribution of Cherenkov photons with
the wide-angle atmospheric Cherenkov light detector array AIROBICC and
of the charged particle lateral distribution with the scintillator
matrix of the HEGRA air-shower detector complex in air showers are
reported. They are used in conjunction to determine the energy
spectrum and coarse chemical composition of charged cosmic rays in the
energy interval from 0.3 PeV to 10 PeV. With the atmospheric
shower-front sampling technique these detectors measure the
electromagnetic component of an extensive air shower via the lateral
density distribution of the shower particles and of the Cherenkov
photons. The data are compared with events generated with the CORSIKA
program package with the QGSJET hadronic-event generator. Consistency
checks performed with primary energy-reconstruction methods based on
different shower observables indicate satisfactory agreement between
these extensive air shower simulations and the experimental data. This
permits to derive results concerning the energy spectrum and
composition of charged cosmic rays.
The energy spectrum features a so called "knee" at an energy of
= PeV.
Power law fits to the differential energy spectrum yield indices of
below and
above the knee.
The best-fit elongation rate for the whole energy range is
determined to 78.3 1.0 (stat)
6.2 (syst) g/cm2. At the
highest energies it seems to decrease slightly. The best-fit fraction
of light nuclei decreases from
(combined statistical and systematic) to
(combined statistical and systematic)
in the energy range discussed here. A detailed study of the systematic
errors reveals that a non-changing composition cannot be excluded.
Key words: ISM: cosmic rays
* Now at Forschungszentrum Karlsruhe, P.O. Box 3640, 76021 Karlsruhe, Germany
** Now at Line Consulting AG, Hamburg
*** Now at Universidad Autónoma de Barcelona, Institut de Física d'Altes Energies, 08193 Bellaterra, Spain
Send offprint requests to: R. Plaga (plaga@mppmu.mpg.de)
© European Southern Observatory (ESO) 2000
Online publication: July 7, 2000
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