Cosmic ray spectrum in the energy range 1.0E15-1.0E18 eV and the second knee according to the small Cherenkov setup at the Yakutsk EAS array

From the data on Cherenkov light from EASs collected over the period of more than 15 years, the spectrum of cosmic rays was obtained in the energy range 1.0E15-1.0E18 eV. This spectrum has two features: at ~3.0E15 eV (first knee) and at ~1.0E17 eV (second knee). The first knee is characterized by th...

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Main Authors: Knurenko, S. P., Petrov, Z. E., Sidorov, R., Sleptsov, I. Ye., Starostin, S. K., Struchkov, G. G.
Format: Report
Language:unknown
Published: arXiv 2013
Subjects:
Online Access:https://dx.doi.org/10.48550/arxiv.1310.1978
https://arxiv.org/abs/1310.1978
id ftdatacite:10.48550/arxiv.1310.1978
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spelling ftdatacite:10.48550/arxiv.1310.1978 2023-05-15T18:45:29+02:00 Cosmic ray spectrum in the energy range 1.0E15-1.0E18 eV and the second knee according to the small Cherenkov setup at the Yakutsk EAS array Knurenko, S. P. Petrov, Z. E. Sidorov, R. Sleptsov, I. Ye. Starostin, S. K. Struchkov, G. G. 2013 https://dx.doi.org/10.48550/arxiv.1310.1978 https://arxiv.org/abs/1310.1978 unknown arXiv arXiv.org perpetual, non-exclusive license http://arxiv.org/licenses/nonexclusive-distrib/1.0/ High Energy Astrophysical Phenomena astro-ph.HE FOS Physical sciences Preprint Article article CreativeWork 2013 ftdatacite https://doi.org/10.48550/arxiv.1310.1978 2022-04-01T13:11:57Z From the data on Cherenkov light from EASs collected over the period of more than 15 years, the spectrum of cosmic rays was obtained in the energy range 1.0E15-1.0E18 eV. This spectrum has two features: at ~3.0E15 eV (first knee) and at ~1.0E17 eV (second knee). The first knee is characterized by the indexes γ_1=2.7+/-0.03 and γ_2 = 3.12+/-0.03 and the second knee - by γ_1 = 2.92+/-0.03 and γ_2=3.24+/-0.04. In the second case the difference amounts to Δγ_23=0.32{\pm}0.03{\pm}0.05 which is less than the case of the first knee Δγ_12=0.42+/-0.03+/-0.05 (here dual errors represent statistics and systematics correspondingly). The lesser difference Δγ_23 can be explained with the influx of cosmic rays from Meta-galaxy and, hence, with some increase of the cosmic rays intensity in the energy range 5.0E16-1.0E18 eV, which compensates the escape of heavier nuclei from the Galaxy. The presence of the second knee could be confirmed by abrupt change in mass composition from from lnA~3 at ~1.0E17 eV to lnA~1.5 at 1.0E18eV found from the analysis of longitudinal development of EAS. : 8 pages, 3 figures in Proc. of 33rd International Cosmic Ray Conference, Rio de Janeiro, Brazil, July 2013 Report Yakutsk DataCite Metadata Store (German National Library of Science and Technology) Yakutsk
institution Open Polar
collection DataCite Metadata Store (German National Library of Science and Technology)
op_collection_id ftdatacite
language unknown
topic High Energy Astrophysical Phenomena astro-ph.HE
FOS Physical sciences
spellingShingle High Energy Astrophysical Phenomena astro-ph.HE
FOS Physical sciences
Knurenko, S. P.
Petrov, Z. E.
Sidorov, R.
Sleptsov, I. Ye.
Starostin, S. K.
Struchkov, G. G.
Cosmic ray spectrum in the energy range 1.0E15-1.0E18 eV and the second knee according to the small Cherenkov setup at the Yakutsk EAS array
topic_facet High Energy Astrophysical Phenomena astro-ph.HE
FOS Physical sciences
description From the data on Cherenkov light from EASs collected over the period of more than 15 years, the spectrum of cosmic rays was obtained in the energy range 1.0E15-1.0E18 eV. This spectrum has two features: at ~3.0E15 eV (first knee) and at ~1.0E17 eV (second knee). The first knee is characterized by the indexes γ_1=2.7+/-0.03 and γ_2 = 3.12+/-0.03 and the second knee - by γ_1 = 2.92+/-0.03 and γ_2=3.24+/-0.04. In the second case the difference amounts to Δγ_23=0.32{\pm}0.03{\pm}0.05 which is less than the case of the first knee Δγ_12=0.42+/-0.03+/-0.05 (here dual errors represent statistics and systematics correspondingly). The lesser difference Δγ_23 can be explained with the influx of cosmic rays from Meta-galaxy and, hence, with some increase of the cosmic rays intensity in the energy range 5.0E16-1.0E18 eV, which compensates the escape of heavier nuclei from the Galaxy. The presence of the second knee could be confirmed by abrupt change in mass composition from from lnA~3 at ~1.0E17 eV to lnA~1.5 at 1.0E18eV found from the analysis of longitudinal development of EAS. : 8 pages, 3 figures in Proc. of 33rd International Cosmic Ray Conference, Rio de Janeiro, Brazil, July 2013
format Report
author Knurenko, S. P.
Petrov, Z. E.
Sidorov, R.
Sleptsov, I. Ye.
Starostin, S. K.
Struchkov, G. G.
author_facet Knurenko, S. P.
Petrov, Z. E.
Sidorov, R.
Sleptsov, I. Ye.
Starostin, S. K.
Struchkov, G. G.
author_sort Knurenko, S. P.
title Cosmic ray spectrum in the energy range 1.0E15-1.0E18 eV and the second knee according to the small Cherenkov setup at the Yakutsk EAS array
title_short Cosmic ray spectrum in the energy range 1.0E15-1.0E18 eV and the second knee according to the small Cherenkov setup at the Yakutsk EAS array
title_full Cosmic ray spectrum in the energy range 1.0E15-1.0E18 eV and the second knee according to the small Cherenkov setup at the Yakutsk EAS array
title_fullStr Cosmic ray spectrum in the energy range 1.0E15-1.0E18 eV and the second knee according to the small Cherenkov setup at the Yakutsk EAS array
title_full_unstemmed Cosmic ray spectrum in the energy range 1.0E15-1.0E18 eV and the second knee according to the small Cherenkov setup at the Yakutsk EAS array
title_sort cosmic ray spectrum in the energy range 1.0e15-1.0e18 ev and the second knee according to the small cherenkov setup at the yakutsk eas array
publisher arXiv
publishDate 2013
url https://dx.doi.org/10.48550/arxiv.1310.1978
https://arxiv.org/abs/1310.1978
geographic Yakutsk
geographic_facet Yakutsk
genre Yakutsk
genre_facet Yakutsk
op_rights arXiv.org perpetual, non-exclusive license
http://arxiv.org/licenses/nonexclusive-distrib/1.0/
op_doi https://doi.org/10.48550/arxiv.1310.1978
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