Astronomy and Astrophysics – Astronomy
Scientific paper
May 2008
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=2008apj...678..907s&link_type=abstract
The Astrophysical Journal, Volume 678, Issue 2, pp. 907-921.
Astronomy and Astrophysics
Astronomy
1
Ism: Cosmic Rays, Diffusion, Galaxy: Abundances, Nuclear Reactions, Nucleosynthesis, Abundances
Scientific paper
Based on our three-dimensional cosmic-ray (CR) propagation model, we study the behavior of CR antiprotons (CR-p¯'s), and compare our numerical results with recent experimental data, particularly those obtained by the BESS group. There is a common perception that diffusion-reacceleration models produce too low a p¯ flux below 5 GeV. However, we find that the BESS data are compatible with a model including the reacceleration process in the energy region >~1 GeV, if we adopt Galactic parameters that reproduce the CR data for primary components (protons, helium, etc.), secondary components (B, sub-Fe), and CR isotopes (10Be, 26Be, etc.). This indicates that most CR-p¯'s are secondary products of collisions between CRs and the interstellar medium (ISM) gas. However, because of poor statistics, we could not confirm whether or not BESS data with energies less than 1 GeV are consistent with those expected from other CR components, even taking the modulation effect into account. Nevertheless, it is important to determine the intensity of CR-p¯'s expected from the rich CR data now available, for studies of p¯'s of cosmological origin, such as the evaporation of primordial black holes and/or the annihilation of supersymmetiric dark matter particles.
Futo Y.
Sekiguchi Satoshi
Shibata Tadahiro
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