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Radio Measurements of Air Showers with LOPES

Authors :
A. Horneffer
D. Kang
C. Grupen
M. Ludwig
I.M. Brancus
J. Wochele
Octavian Sima
M. E. Bertaina
A. Schmidt
H. Gemmeke
J. Rautenberg
Tim Huege
P. Łuczak
N. Palmieri
D. Heck
E. Cantoni
Ralph Engel
D. Fuhrmann
Paula Gina Isar
K. Link
A. Haungs
F. Di Pierro
C. Morello
J. Zabierowski
W. D. Apel
Peter L. Biermann
O. Krömer
L. Bähren
P. Doll
Heino Falcke
H. Bozdog
A. Weindl
Jan Kuijpers
Kai Daumiller
H. Rebel
H. Schieler
Béatrice Fuchs
A. Saftoiu
K. H. Kampert
T. Pierog
Frank G. Schröder
Jörg R. Hörandel
J. A. Zensus
V. de Souza
J. Blümer
J. C. Arteaga-Velázquez
G. Toma
G.C. Trinchero
M. Melissas
J. Oehlschläger
D. Huber
C. Rühle
Markus Roth
Andrea Chiavassa
H. J. Mathes
K. Bekk
Source :
Journal of Physics : Conference Series, 409, 012075(1)-012075(4), Journal of Physics : Conference Series, 409, 1, pp. 012075(1)-012075(4)
Publication Year :
2013

Abstract

LOPES is a digital antenna array for the radio measurement of cosmic-ray air showers at energies around 1017 eV. It is triggered by the KASCADE-Grande air-shower array at the Karlsruhe Institute of Technology (KIT), Germany. Because of an absolute amplitude calibration and a sophisticated data analysis, LOPES can test models for the radio emission to an up-to-now unachieved level, thus improving our understanding of the radio emission mechanisms. Recent REAS simulations of the air-shower radio emission come closer to the measurements than any previously tested simulations. We have determined the radio-reconstruction precision of interesting air-shower parameters by comparing LOPES reconstructions to both REAS simulations and KASCADE-Grande measurements, and present our latest results for the angular resolution, the energy and the Xmax reconstruction based on the radio measurement of about 500 air showers. Although the precision of LOPES is limited by the high level of anthropogenic noise at KIT, it opens a promising perspective for next-generation radio arrays in regions with a lower ambient noise level.

Details

ISSN :
17426588
Database :
OpenAIRE
Journal :
Journal of Physics : Conference Series, 409, 012075(1)-012075(4), Journal of Physics : Conference Series, 409, 1, pp. 012075(1)-012075(4)
Accession number :
edsair.doi.dedup.....4fc047b695bc135c0774be6a8e20548d