KASCADE-Grande energy reconstruction based on the lateral density distribution using the QGSJet-II.04 interaction model
Author(s) -
A. GherghelLascu,
W.D. Apel,
J. C. Arteaga-Velázquez,
K. Bekk,
Mario Bertania,
J. Blümer,
H. Bozdog,
I. M. Brancus,
E. Cantoni,
A. Chiavassa,
F. Cossavella,
K. Daumiller,
V. de Souza,
F. Di Pierro,
P. Döll,
R. Engel,
D. Fuhrmann,
H.J. Gils,
R. Glasstetter,
C. Grupen,
A. Haungs,
D. Heck,
J.R. Hörandel,
D. Huber,
T. Huege,
K.H. Kampert,
D. Kang,
H.O. Klages,
K. Link,
P. Łuczak,
H.J. Mathes,
H.J. Mayer,
J. Milke,
B. Mitrica,
C. Morello,
J. Oehlschläger,
S. Ostapchenko,
N. Palmieri,
T. Pierog,
H. Rebel,
M. Roth,
H. Schieler,
S. Schoo,
Frank Schröder,
O. Sima,
G. Toma,
G. Trinchero,
H. Ulrich,
A. Weindl,
J. Wochele,
J. Zabierowski
Publication year - 2017
Publication title -
aip conference proceedings
Language(s) - English
Resource type - Conference proceedings
SCImago Journal Rank - 0.177
H-Index - 75
eISSN - 1551-7616
pISSN - 0094-243X
DOI - 10.1063/1.4984877
Subject(s) - energy (signal processing) , distribution (mathematics) , physics , computer science , statistics , mathematics , mathematical analysis
The charged particle densities obtained from CORSIKA simulated EAS, using the QGSJet-II.04 hadronic interaction model are used for primary energy reconstruction. Simulated data are reconstructed by using Lateral Energy Correction Functions computed with a new realistic model of the Grande stations implemented in Geant4.10.
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