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Enhancing the relative Fe-to-proton abundance in ultra-high-energy cosmic rays

机译:增强超高能宇宙射线中铁对质子的相对丰度

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We study a generic class of models for ultra-high energy cosmic ray (UHECR) phenomenology, in which the sources accelerate protons and nuclei with a power-law spectrum having the same index, but with different values for the maximum proton energies, distributed according to a power-law. We show that, for energies sufficiently lower than the maximum proton energy, such models are equivalent to single-type source models, with a larger effective power law index and a heavier composition at the source. We calculate the resulting enhancement of the abundance of nuclei, and find typical values of a factor 2-10 for Fe nuclei. At the highest energies, the heavy nuclei enhancement ratios become larger, and the granularity of the sources must also be taken into account. We conclude that the effect of a distribution of maximum energies among sources must be considered in order to understand both the energy spectrum and the composition of UHECRs, as measured on Earth.
机译:我们研究了超高能宇宙射线(UHECR)现象学的一类通用模型,其中,源以具有相同指数但最大质子能量值不同的幂律谱来加速质子和原子核,并根据制定法律我们表明,对于足够低于最大质子能量的能量,此类模型等效于单一类型的源模型,具有更大的有效功率定律指数和较重的源组成。我们计算得到的原子核丰度增强,并找到铁原子核的2-10因子的典型值。在最高能量下,重核增强比变大,并且还必须考虑源的粒度。我们得出的结论是,必须考虑最大能量分配在各个源之间的影响,以便了解在地球上测量的UHECR的能谱和组成。

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