On irregularities in the cosmic ray spectrum of \(10^{16}-10^{18}\) eV range

Stanislav P. Knurenko, Igor S. Petrov
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Abstract

Existing small, medium and large arrays for the study of cosmic rays of ultra-high energies are aimed for obtaining information about our galaxy and extragalactic space, namely to search and study astronomical objects that produce the flux of relativistic particles. The drift and interaction of such particles with magnetic fields and shock waves taking place in interstellar space causes the same interest. The shape of the energy spectrum of cosmic rays in the energy range 10^{15}-10^{18} 10151018 eV, where the "knee" and the "second knee’’ are observed, can be formed as a superposition of the partial spectra of various chemical elements. Verification of galactic models, using recent experimental spectral data, makes it possible to study the nature of the galactic and extragalactic components of cosmic rays. The paper presents the result of the energy spectrum of cosmic rays in the range 10^{16}-10^{18} 10161018 eV of measurements obtained with the Small Cherenkov array - a part of the Yakutsk array.
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论\(10^{16}-10^{18}\) eV范围宇宙射线谱的不规则性
现有的用于超高能量宇宙射线研究的小型、中型和大型阵列旨在获取我们银河系和河外空间的信息,即搜索和研究产生相对论性粒子通量的天体。这些粒子在星际空间中与磁场和冲击波发生的漂移和相互作用引起了同样的兴趣。宇宙射线在10^{15}-10^{18}1015−1018 eV的能量范围内的能量谱的形状可以由各种化学元素的部分光谱叠加而成,其中“膝部”和“第二膝部”被观测到。利用最近的实验光谱数据验证星系模型,使研究宇宙射线的星系和星系外成分的性质成为可能。本文介绍了雅库茨克小切伦科夫阵列在10^{16}-10^{18}1016−1018 eV范围内的宇宙射线能谱的测量结果。
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