The composition of cosmic rays according to the data on EAS cores

S. B. Shaulov, V. A. Ryabov, Sergey E. Pyatovsky, A. L. Shepetov, V. V. Zhukov
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Abstract

The main purpose of this work is to find the causes of the break of the cosmic ray spectrum at an energy of 3 PeV, which is called the knee. The solution of the problem is associated with the determination of the nuclear composition of cosmic rays in the knee area. The conclusions of this work are based on the analysis of the characteristics of the EAS cores obtained using X-ray emulsion chambers. According to these data, a number of anomalous effects are observed in the knee region, such as scaling violation in the spectra of secondary hadrons, an excess of muons in EAS with gamma families and others. At the same energies equivalent to 1-100 PeV the laboratory system colliders show scaling behavior. So analysis of the data on the EAS cores suggests that the knee in their spectrum is formed by a component of cosmic rays of a non-nuclear nature, possibly consisting of stable (quasi-stable) particles of hypothetical strange quark matter, which named strangelets. This is the only model of the knee compatible with the magnetic rigidity of the nuclear spectra break R=100 TV. In fact, stranglets are stable heavy quasi-nuclei with a positive electric charge of Z=30-1000, so the mechanism of their acceleration coincides with the nuclear one. The break of the cosmic ray spectrum can be associated with a significantly larger mass of strangelets compared to nuclei.
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根据EAS核上的数据,宇宙射线的组成
这项工作的主要目的是找到宇宙射线光谱在3 PeV能量处断裂的原因,这被称为膝盖。这个问题的解决与确定膝盖区域宇宙射线的核组成有关。本工作的结论是基于对使用x射线乳剂室获得的EAS核的特性分析。根据这些数据,在膝区观察到一些异常效应,如次级强子光谱中的标度违逆,具有伽玛族的EAS中过量的μ子等。在相当于1-100 PeV的相同能量下,实验室系统对撞机表现出缩放行为。因此,对EAS核心数据的分析表明,它们光谱中的膝盖是由非核性质的宇宙射线组成的,可能由假设的奇异夸克物质的稳定(准稳定)粒子组成,这些粒子被称为奇异夸克。这是唯一与膝磁刚度核谱破R=100 TV兼容的模型。事实上,奇异子是稳定的重准核,正电荷为Z=30-1000,因此它们的加速机制与原子核的加速机制一致。宇宙射线谱的断裂可能与比原子核质量大得多的奇异夸克有关。
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