A non-parametric approach to infer the energy spectrum and the mass composition of cosmic rays

被引:72
作者
Antoni, T
Apel, WD
Badea, F
Bekk, K
Blümer, H
Bollmann, E
Bozdog, H
Brancus, IM
Büttner, C
Chilingarian, A
Daumiller, K
Doll, P
Engler, J
Fessler, F
Gils, HJ
Glasstetter, R
Haeusler, R
Hafemann, W
Haungs, A
Heck, D
Hörandel, JR
Holst, T
Kampert, KH
Kempa, J
Klages, HO
Knapp, J
Maier, G
Mathes, HJ
Mayer, HJ
Milke, J
Mühlenberg, D
Müller, M
Oehlschläger, J
Petcu, M
Rebel, H
Risse, M
Roth, M [1 ]
Schatz, G
Scholz, J
Thouw, T
Ulrich, H
Vardanyan, A
Vulpescu, B
Weber, JH
Wentz, J
Wiegert, T
Wochele, J
Zabierowski, J
Zagromski, S
机构
[1] Forschungszentrum Karlsruhe, Inst Kernphys, D-76021 Karlsruhe, Germany
[2] Natl Inst Phys & Nucl Engn, Bucharest 7690, Romania
[3] Univ Karlsruhe, Inst Expt Kernphys, D-76021 Karlsruhe, Germany
[4] Yerevan Phys Inst, Cosm Ray Div, Yerevan 36, Armenia
[5] Univ Lodz, Dept Expt Phys, PL-90236 Lodz, Poland
[6] Soltan Inst Nucl Studies, PL-90950 Lodz, Poland
关键词
cosmic rays; energy spectrum; mass composition; knee; EAS;
D O I
10.1016/S0927-6505(01)00111-6
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
The experiment KASCADE observes simultaneously the electron-photon, muon, and hadron components of high-energy extensive air showers (EAS). The analysis of EAS observables for an estimate of energy and mass of the primary particle invokes extensive Monte Carlo simulations of the EAS development for preparing reference patterns. The present studies utilize the air shower simulation code CO R S I K A with the hadronic interaction models VENUS, QGSJet and Sibyll, including simulations of the detector response and efficiency. By applying non-parametric techniques the measured data have been analyzed in an event-by-event mode and the mass and energy of the EAS inducing particles are reconstructed. Special emphasis is given to methodical limitations and the dependence of the results on the hadronic interaction model used. The results obtained from KASCADE data reproduce the knee in the primary spectrum, but reveal a strong model dependence, Owing to the systematic uncertainties introduced by the hadronic interaction models no strong change of chemical composition can be claimed in the energy range around the knee. (C) 2002 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:245 / 263
页数:19
相关论文
共 42 条
[1]   The cosmic-ray energy spectrum between 10(14.5) and 10(16.3) eV covering the ''knee'' region [J].
Amenomori, M ;
Cao, Z ;
Dai, BZ ;
Ding, LK ;
Feng, YX ;
Feng, ZY ;
Hibino, K ;
Hotta, N ;
Huang, Q ;
Huo, AX ;
Jia, HY ;
Jiang, GZ ;
Jiao, SQ ;
Kajino, F ;
Kasahara, K ;
Labaciren ;
Liu, SM ;
Mei, DM ;
Meng, L ;
Meng, XR ;
Mimaciren ;
Mizutani, K ;
Mu, J ;
Nanjo, H ;
Nishizawa, M ;
Ohnishi, M ;
Ohta, I ;
Ouchi, T ;
Ren, JR ;
Saito, T ;
Sakata, M ;
Shi, ZZ ;
Shibata, M ;
Shiomi, A ;
Shirai, T ;
Sugimoto, H ;
Sun, XX ;
Taira, K ;
Tan, YH ;
Tateyama, N ;
Torii, S ;
Wang, H ;
Wen, CZ ;
Yamamoto, Y ;
Yu, GC ;
Yuan, P ;
Yuda, T ;
Zhang, CS ;
Zhang, HM ;
Zhang, L .
ASTROPHYSICAL JOURNAL, 1996, 461 (01) :408-414
[2]   Electron, muon, and hadron lateral distributions measured in air showers by the KASCADE experiment [J].
Antoni, T ;
Apel, WD ;
Badea, F ;
Bekk, K ;
Bernlöhr, K ;
Blümer, H ;
Bollmann, E ;
Bozdog, H ;
Brancus, IM ;
Chilingarian, A ;
Daumiller, K ;
Doll, P ;
Engler, J ;
Fessler, F ;
Gils, HJ ;
Glasstetter, R ;
Haeusler, R ;
Hafemann, W ;
Haungs, A ;
Heck, D ;
Holst, T ;
Hörandel, JR ;
Kampert, KH ;
Kempa, J ;
Klages, HO ;
Knapp, J ;
Martello, D ;
Mathes, HJ ;
Mayer, HJ ;
Milke, J ;
Mühlenberg, D ;
Oehlschläger, J ;
Petcu, M ;
Rebel, H ;
Risse, M ;
Roth, M ;
Schatz, G ;
Schmidt, FK ;
Thouw, T ;
Ulrich, H ;
Vardanyan, A ;
Vulpescu, B ;
Weber, JH ;
Wentz, J ;
Wiegert, T ;
Wochele, J ;
Zabierowski, J .
ASTROPARTICLE PHYSICS, 2001, 14 (04) :245-260
[3]   Time structure of the extensive air shower muon component measured by the KASCADE experiment [J].
Antoni, T ;
Apel, WD ;
Badea, AF ;
Bekk, K ;
Bernlöhr, K ;
Blümer, H ;
Bollmann, E ;
Bozdog, H ;
Brancus, IM ;
Chilingarian, A ;
Daumiller, K ;
Doll, P ;
Engler, J ;
Fessler, F ;
Gils, HJ ;
Glasstetter, R ;
Haeusler, R ;
Hafemann, W ;
Haungs, A ;
Heck, D ;
Holst, T ;
Hörandel, JR ;
Kampert, KH ;
Kempa, J ;
Klages, HO ;
Knapp, J ;
Martello, D ;
Mathes, HJ ;
Mayer, HJ ;
Milke, J ;
Mühlenberg, D ;
Oehlschläger, J ;
Petcu, M ;
Rebel, H ;
Risse, M ;
Roth, M ;
Schatz, G ;
Schmidt, FK ;
Thouw, T ;
Ulrich, H ;
Vardanyan, A ;
Vulpescu, B ;
Weber, JH ;
Wentz, J ;
Wiegert, T ;
Wochele, J ;
Zabierowski, J ;
Zagromski, S .
ASTROPARTICLE PHYSICS, 2001, 15 (02) :149-165
[4]  
Antoni T, 1999, J PHYS G NUCL PARTIC, V25, P2161, DOI 10.1088/0954-3899/25/10/313
[5]  
Arqueros F, 2000, ASTRON ASTROPHYS, V359, P682
[6]  
BAYES T, 1958, BIOMETRIKA, V45, P296
[7]  
Bishop C. M., 1995, NEURAL NETWORKS PATT
[8]   The detector system for measurement of multiple cosmic muons in the central detector of KASCADE [J].
Bozdog, H ;
Elzer, M ;
Gils, HJ ;
Haungs, A ;
Herm, F ;
Koepernik, H ;
Köhler, KU ;
Kretschmer, M ;
Leibrock, H ;
Mathes, HJ ;
Petcu, M ;
Pröhl, D ;
Rebel, H ;
Wentz, J ;
Wolf, A ;
Zagromski, S .
NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, 2001, 465 (2-3) :455-471
[9]   ESTIMATION OF A MULTIVARIATE DENSITY [J].
CACOULLOS, T .
ANNALS OF THE INSTITUTE OF STATISTICAL MATHEMATICS, 1966, 18 (02) :179-+
[10]  
*CERN PROGR LIB, 1993, W5013 CERN PROGR LIB