arXiv:1210.8180·v2·High Energy Astrophysical Phenomena
Galactic Streams of Cosmic-ray Electrons and Positrons
Matthew D. Kistler (Lawrence Berkeley National Laboratory, UC Berkeley)🇺🇸 · Hasan Yuksel🇺🇸 · Alexander Friedland (Los Alamos National Laboratory)🇺🇸
Abstract
Isotropic diffusion is a key assumption in many models of cosmic-ray electrons and positrons. We find that simulation results imply a critical energy of ~10-1000~GeV above which electrons and positrons can spend their entire lives in streams threading magnetic fields, due to energy losses. This would restrict the number of electron/positron sources contributing at Earth, likely leading to smooth electron/positron spectra, as is observed. For positrons, this could be as few as one, with an enhanced flux that would ease energetics concerns of a pulsar origin of the positron excess, or even zero, bringing dark matter to the fore. We conclude that ideas about electron/positron propagation must be revised and discuss implications for recent AMS-02 data.
Comments: 5 pages, 3 figures; added references and discussion, with contemporaneous responses to PRL referees, including of AMS-02 results