KASCADE-Grande measurements of energy spectra for elemental groups of cosmic rays
The KASCADE-Grande Collaboration: W.D. Apel, J.C. Arteaga-Vel\`azquez,, K. Bekk, M. Bertaina, J. Bl\"umer, H. Bozdog, I.M. Brancus, E. Cantoni, A., Chiavassa, F. Cossavella, K. Daumiller, V. de Souza, F. Di Pierro, P. Doll,, R. Engel, J. Engler, M. Finger, B. Fuchs, D. Fuhrmann

TL;DR
This study extends cosmic ray energy spectrum measurements to beyond 200 PeV using KASCADE-Grande data, revealing a dominance of heavy elements and a knee-like feature in the iron spectrum around 80 PeV.
Contribution
It provides the first detailed elemental spectra above 200 PeV, confirming a knee in the iron spectrum and refining previous composition analyses.
Findings
Heavy mass groups dominate above 200 PeV
Knee-like structure observed in iron spectrum at ~80 PeV
Results support a transition in cosmic ray composition at high energies
Abstract
The KASCADE-Grande air shower experiment [W. Apel, et al. (KASCADE-Grande collaboration), Nucl. Instrum. Methods A 620 (2010) 202] consists of, among others, a large scintillator array for measurements of charged particles, Nch, and of an array of shielded scintillation counters used for muon counting, Nmu. KASCADE-Grande is optimized for cosmic ray measurements in the energy range 10 PeV to about 2000 PeV, where exploring the composition is of fundamental importance for understanding the transition from galactic to extragalactic origin of cosmic rays. Following earlier studies of the all-particle and the elemental spectra reconstructed in the knee energy range from KASCADE data [T. Antoni, et al. (KASCADE collaboration), Astropart. Phys. 24 (2005) 1], we have now extended these measurements to beyond 200 PeV. By analysing the two-dimensional shower size spectrum Nch vs. Nmu for nearly…
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