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Radio detection of cosmic rays with LOPES (LOPES Collaboration)

Authors :
R. Obenland
Markus Roth
R. Engel
F. Di Pierro
C. Morello
G. Toma
G. C. Trinchero
H. Rebel
M. Brüggemann
Peter L. Biermann
D. Zimmermann
K. H. Kampert
T. Huege
J.R. Hörandel
Harvey Butcher
H. Bozdog
A. Haungs
R. Glasstetter
P. Doll
H. Gemmeke
J. Wochele
Octavian Sima
S.J. Lafebre
J. Zabierowski
A. Chiavassa
D. Heck
A. Nigl
J. Blümer
Wolfgang Walkowiak
A. Risse
M. Stümpert
Alexandru Bercuci
L. Bähren
Claus Grupen
G. Navarra
H. Ulrich
T. Asch
A.F. Badea
H. Schieler
H. J. Mathes
Y. Kolotaev
K. Bekk
Stijn Buitink
O. Krömer
H.J. Mayer
Kai Daumiller
T. Pierog
A. Weindl
Jan Kuijpers
P. L. Ghia
S. Nehls
J. van Buren
B. Mitrica
Heino Falcke
J. Oehlschläger
A. Horneffer
S. Over
S. Ostapchenko
J. A. Zensus
J. Petrovic
K. Singh
Peter Buchholz
I.M. Brancus
W. D. Apel
M. E. Bertaina
J. Milke
M. Petcu
F. Cossavella
C. Meurer
S. Plewnia
Source :
Brazilian Journal of Physics. 36:1157-1164
Publication Year :
2006
Publisher :
FapUNIFESP (SciELO), 2006.

Abstract

Data taken with a radio antenna array in combination with the ground-level air shower experiment KASCADE-Grande at the Forschungszentrum Karlsruhe open up the possibility to measure large extensive air showers with this new technique. The pulse height of the observed radio signals scales with the primary energy of the particles initiating the air shower. The dependence of the radio signal on the angle of the shower axis with respect to the Earth's geomagnetic field and the coherence of the radiation suggest that the radio signal generation is due to the geosynchrotron mechanism.

Details

ISSN :
01039733
Volume :
36
Database :
OpenAIRE
Journal :
Brazilian Journal of Physics
Accession number :
edsair.doi...........59879b3af7c39e08a94eb59f3be53852