Spallation processes and nuclear interaction products of cosmic rays

Phys Rep. 1990 Aug;191(6):351-408. doi: 10.1016/0370-1573(90)90109-f.

Abstract

Most cosmic-ray nuclei heavier than helium have suffered nuclear collisions in the interstellar gas, with transformation of nuclear composition. The isotopic and elemental composition at the sources has to be inferred from the observed composition near the Earth. The source composition permits tests of current ideas on sites of origin, nucleosynthesis in stars, evolution of stars, the mixing and composition of the interstellar medium and injection processes prior to acceleration. The effects of nuclear spallation, production of radioactive nuclides and the time dependence of their decay provide valuable information on the acceleration and propagation of cosmic rays, their nuclear transformations, and their confinement time in the Galaxy. The formation of spallation products that only decay by electron capture and are relatively long-lived permits an investigation of the nature and density fluctuations (like clouds) of the interstellar medium. Since nuclear collisions yield positrons, antiprotons, gamma rays and neutrinos, we shall discuss these topics briefly.

Publication types

  • Review

MeSH terms

  • Astronomical Phenomena
  • Astronomy*
  • Cosmic Radiation*
  • Elementary Particles*
  • Elements
  • Gamma Rays
  • Isotopes
  • Mathematics
  • Nuclear Physics*
  • Radioactivity
  • Scattering, Radiation

Substances

  • Elements
  • Isotopes