English

A minimal model for extragalactic cosmic rays and neutrinos

High Energy Astrophysical Phenomena 2017-10-11 v2

Abstract

We aim to explain in a unified way the experimental data on ultrahigh energy cosmic rays (UHECR) and neutrinos, using a single source class and obeying limits on the extragalactic diffuse gamma-ray background (EGRB). If UHECRs only interact hadronically with gas around their sources, the resulting diffuse CR flux can be matched well to the observed one, providing at the same time large neutrino fluxes. However, air showers in the Earth's atmosphere induced by UHECRs with energies E>3×1018E>3\times 10^{18} eV would reach in such a case their maxima too high. Therefore additional photo-hadronic interactions of UEHCRs close to the accelerator have to be present, in order to modify the nuclear composition of CRs in a relatively narrow energy interval. We include thus both photon and gas backgrounds, and combine the resulting CR spectra with the high-energy part of the Galactic CR fluxes predicted by the escape model. As result, we find a good description of experimental data on the total CR flux, the mean shower depth X_\max and its width RMS(X_\max) in the whole energy range above E1017E\simeq 10^{17} eV. The predicted high-energy neutrino flux matches IceCube measurements, while the contribution to the EGRB is of order 30%.

Keywords

Cite

@article{arxiv.1704.06893,
  title  = {A minimal model for extragalactic cosmic rays and neutrinos},
  author = {M. Kachelriess and O. Kalashev and S. Ostapchenko and D. V. Semikoz},
  journal= {arXiv preprint arXiv:1704.06893},
  year   = {2017}
}

Comments

v2: 7 pages, 6 eps figures; slightly extended version to appear in PRD

R2 v1 2026-06-22T19:24:50.768Z