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Implications on the origin of cosmic rays in light of 10 TV spectral softenings

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Precise measurements of the energy spectra of cosmic rays (CRs) show various kinds of features deviating from single power-laws, which give very interesting and important implications on their origin and… Click to show full abstract

Precise measurements of the energy spectra of cosmic rays (CRs) show various kinds of features deviating from single power-laws, which give very interesting and important implications on their origin and propagation. Most recently, spectral softenings around 10 TV of various CR nuclei have been indicated by a few balloon and space experiments. In particular, the DArk Matter Particle Explorer (DAMPE) measurement about the proton spectrum clearly reveals such a softening with a high significance. Here we study the implications of these new measurements, as well as the groundbased indirect measurements, on the origin of CRs. We find that a single component of CRs fails to fit the spectral softening and the air shower experiment data simultaneously. In the framework of multiple components, we discuss two possible scenarios, the multiple source population scenario and the background plus nearby source scenario. Both scenarios give reasonable fits to the wide-band data from TeV to 100 PeV energies. Considering the anisotropy observations, the nearby source model is favored.

Keywords: light spectral; spectral softenings; cosmic rays; implications origin; origin cosmic; rays light

Journal Title: Frontiers of Physics
Year Published: 2019

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