English

The `excess' of primary cosmic ray electrons

High Energy Astrophysical Phenomena 2015-09-30 v2 High Energy Physics - Phenomenology

Abstract

With the accurate cosmic ray (CR) electron and positron spectra (denoted as Φe\Phi_{\rm e^{-}} and Φe+\Phi_{\rm e^{+}}, respectively) measured by AMS-02 collaboration, the difference between the electron and positron fluxes (i.e., ΔΦ=ΦeΦe+\Delta \Phi=\Phi_{\rm e^{-}}-\Phi_{\rm e^{+}}), dominated by the propagated primary electrons, can be reliably inferred. In the standard model, the spectrum of propagated primary CR electrons at energies 30\geq 30 GeV softens with the increase of energy. The absence of any evidence for such a continuous spectral softening in ΔΦ\Delta \Phi strongly suggests a significant `excess' of primary CR electrons and at energies of 100400100-400 GeV the identified excess component has a flux comparable to that of the observed positron excess. Middle-age but `nearby' supernova remnants (e.g., Monogem and Geminga) are favored sources for such an excess.

Keywords

Cite

@article{arxiv.1412.1550,
  title  = {The `excess' of primary cosmic ray electrons},
  author = {Xiang Li and Zhao-Qiang Shen and Bo-Qiang Lu and Tie-Kuang Dong and Yi-Zhong Fan and Lei Feng and Si-Ming Liu and Jin Chang},
  journal= {arXiv preprint arXiv:1412.1550},
  year   = {2015}
}

Comments

13 pages, 2 figures, Phys. Lett. B, in press