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Application of New Approximations of the Lateral Distribution of EAS Cherenkov Light in the Atmosphere

Authors :
R. R. Mirgazov
V. A. Poleschuk
N. B. Lubsandorzhiev
Oleg Fedorov
A. Pakhorukov
L. G. Tkachev
Evgeny Postnikov
A. V. Tkachenko
M. Slunecka
Bayarto Lubsandorzhiev
A. Borodin
Andrey Sokolov
E.G. Popova
O. A. Gress
L. G. Sveshnikova
Y. Sagan
R. D. Monkhoev
T. I. Gress
E. A. Osipova
V. V. Lenok
A. N. Dyachok
P. S. Kirilenko
O. G. Grishin
Pavel Bezyazeekov
V. Boreyko
M. Tluczykont
V. A. Kozhin
V. V. Kindin
K. G. Kompaniets
A. V. Skurikhin
R. Nachtigall
A. Porelli
R. Mirzoyan
A. Pushnin
L. V. Pankov
Valery Zurbanov
N. V. Gorbunov
B.A. Tarashansky
A. A. Lagutin
Roman Raikin
Aleksandr Gafarov
I. I. Yashin
V. P. Sulakov
M. Popesku
Dieter Horns
A. Sidorenkov
A. A. Grinyuk
A. A. Silaev
Yu. A. Semeney
V. Samoliga
C. Spiering
Mikhail Panasyuk
Aleksey Zagorodnikov
M. Kunnas
V. S. Ptuskin
A. Chiavassa
E. A. Kravchenko
V. Prosin
A. Ivanova
N. I. Karpov
R. Wischnewski
L. A. Kuzmichev
V. M. Grebenyuk
A. A. Petrukhin
A. Sh. M. Elshoukrofy
Yulia Kazarina
N. M. Budnev
S. Kiryuhin
V.A. Tabolenko
E. E. Korosteleva
A. Garmash
Hussein A. Motaweh
R. P. Kokoulin
I. I. Astapov
Grigory Rubtsov
N. N. Kalmykov
Source :
Physics of Atomic Nuclei. 81:1294-1300
Publication Year :
2018
Publisher :
Pleiades Publishing Ltd, 2018.

Abstract

A new knee-like approximation of the lateral distribution function (LDF) of EAS Cherenkov light in the 30–3000 TeV energy range was proposed and tested with simulated showers in our earlier studies. This approximation fits the LDFs of individual showers accurately for all types of primary particles gamma-rays, protons, and nuclei) and is suitable for reconstructing the shower core, determining the energy, and separating gamma-induced showers from hadron-induced ones. In the present study, the knee-like fitting function is used to determine the parameters of real showers detected by TAIGA-HiSCORE. It is demonstrated that this approximation characterizes properly all types of individual LDFs of experimental events in the 300–1000 TeV range. The accuracy of fit is governed by fluctuations intrinsic to the process of measurement of the Cherenkov photon density. The probability density function of these fluctuations was reconstructed and introduced into simulations. Certain useful methodical applications of the knee-like approximation are con-sidered, and the possibility of shower sorting into nuclei groups is examined. The extensive statistical coverage and detailed LDF measurement data of HiSCORE have provided the first opportunity to examine in depth the LDF of Cherenkov radiation in the 300–1000 TeV range.

Details

ISSN :
1562692X and 10637788
Volume :
81
Database :
OpenAIRE
Journal :
Physics of Atomic Nuclei
Accession number :
edsair.doi...........d4ea5267cb63480841a92838c63fb167