COSMIC RAYS FROM ACCRETING ISOLATED NEUTRON STARS
Abstract
Interstellar matter that is accreted onto isolated magnetic neutron stars in the Galaxy ( by number) is accelerated and reflected back by MHD shocks, which envelope the stars. The integrated power in the Galaxy is , the energy distribution is a power law of spectral index , and the particle energy can be raised to GeV, consistent with the power and spectrum of primary cosmic rays in the Galaxy. The major contribution for comes from a minority of isolated neutron stars which are located within dense clouds. Sources in these clouds, that are generally spread within the Galactic disk, can explain the concentration of high-energy cosmic rays in the Galactic plane, as deduced from pion decay spectra in gamma-ray observations. The soft X-ray luminosity from these neutron stars is consistent with the Galactic X-ray background. The accretion may be associated with ion-neutral bias, that is further enhanced by ion confinement in frozen-in magnetic fields, which can raise the relative abundance of first ionization potential (FIP) elements in the cosmic rays.
Cite
@article{arxiv.astro-ph/9501081,
title = {COSMIC RAYS FROM ACCRETING ISOLATED NEUTRON STARS},
author = {Amotz Shemi},
journal= {arXiv preprint arXiv:astro-ph/9501081},
year = {2015}
}
Comments
11 pages, simple TEX; to be published in MNRAS