Unique Properties of Cosmic Rays: Results from the Alpha Magnetic spectrometer

V. Choutko, Qi Yan
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Abstract

We report the properties of cosmic ray nuclei from protons to nickel (Z=1–14, 16, 26, and 28) in the rigidity range from 2 GV to 3 TV collected by the Alpha Magnetic Spectrometer on the International Space Station from May 19, 2011 to May 6, 2021. We found that the primary cosmic rays He-C-O-Fe-Ni, and Ne-Mg-Si-S belong to two different classes of cosmic rays. We also found that the secondary cosmic rays Li-Be-B and F belong to another two different classes of cosmic rays.The rigidity dependences of the secondary cosmic rays and the primary cosmic rays are distinctly different. In particular, above ∼ 200 GV the secondary cosmic rays harden twice as much as the primary cosmic rays. The third group of cosmic rays N, Na, and Al can be described as linear combinations of primary (O, Si) and secondary (B, F) cosmic rays. Compared with O and Si, the primary cosmic rays C, Ne, Mg, and S were found to have secondary component, similar to N, Na, and Al. As a result, the C/O, N/O, Ne/Si, Na/Si, Al/Si, Mg/Si, and S/Si abundance ratios at the source are directly determined independent of cosmic ray propagation. Finally, we found that the lightest and most abundant primary proton cosmic rays have two components, the first being with the same rigidity dependence as He-C-O-Fe-Ni and the second with rigidity spectral index softer than the first one by Δ 𝑝 / 𝐻𝑒 = 0 . 30 ± 0 . 01.
宇宙射线的独特性质:阿尔法磁谱仪的结果
本文报道了2011年5月19日至2021年5月6日由国际空间站α磁谱仪采集的2 GV至3 TV刚性范围内从质子到镍(Z=1 - 14,16,26和28)的宇宙射线原子核的性质。我们发现原宇宙射线He-C-O-Fe-Ni和Ne-Mg-Si-S属于两种不同的宇宙射线。我们还发现次级宇宙射线Li-Be-B和F属于另外两种不同类型的宇宙射线。次级宇宙射线和初级宇宙射线的刚性依赖关系明显不同。特别是,在~ 200gv以上,次级宇宙射线的强度是初级宇宙射线的两倍。第三组宇宙射线N, Na和Al可以被描述为初级(O, Si)和次级(B, F)宇宙射线的线性组合。与O和Si相比,原宇宙射线C、Ne、Mg和S具有类似于N、Na和Al的二次成分,因此,可以直接确定源处的C/O、N/O、Ne/Si、Na/Si、Al/Si、Mg/Si和S/Si丰度比,而不受宇宙射线传播的影响。最后,我们发现最轻和最丰富的主质子宇宙射线有两个组成部分,第一部分与He-C-O-Fe-Ni具有相同的刚性依赖关系,第二部分的刚性谱指数比第一部分软Δ𝑝/𝐻𝑒= 0。30±0。01.
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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