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An optimized method for the reconstruction of the direction of air showers for scintillator arrays

Authors :
N. Magnussen
R.N. Sooth
S. Martinez
E. Lorenz
R. Eckmann
D. Schmele
José Fernández
I. Holl
H. Kornmeyer
Burkhardt Funk
G. Rauterberg
O. Kirstein
S. Westerhoff
D. Petry
N. Müller
C. Prosch
Wolfgang Rhode
L. Padilla
B. Wiebel-Sooth
Axel Lindner
S.M. Bradbury
M. Samorski
J. Prahl
V. Haustein
T. Deckers
R. Plaga
Abelardo Moralejo
E. Feigl
M. Merck
J. Sanchez
F. Arqueros
W. Stamm
Juan Cortina
V. Fonseca
J. Gebauer
F. Krennrich
M. Willmer
H. Möller
J. C. Gonzalez
Henric Krawczynski
H. Meyer
G. Heinzelmann
R. Mirzoyan
Source :
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 383:431-440
Publication Year :
1996
Publisher :
Elsevier BV, 1996.

Abstract

An optimized method is presented for the reconstruction of air shower directions for scintillator arrays. The method takes into account that both the expectation value and the spread of the measured arrival times not only depend on the distance of a counter from the shower axis, but also on the number of particles registered in that counter. It also takes into account that the distributions of the measured arrival times are not Gaussian. For showers recorded with the HEGRA scintillator array above the threshold energy of E thres = 20 TeV the mean angular resolution obtained with this method is 〈 σ 63% θ 〉 = 1.0°, and above the threshold E thres = 50 TeV it is 〈 σ 63% θ 〉 = 0.6°. Comparing the new procedure with the HEGRA standard procedure the angular resolution has improved on average by a factor of 1.33. The mis-pointing has been determined with an accuracy of 0.15°. The method is developed using experimental data.

Details

ISSN :
01689002
Volume :
383
Database :
OpenAIRE
Journal :
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment
Accession number :
edsair.doi...........2028b5d4c3a030d63381c9f12cc4f2dd