The AMS-02 experiment is measuring the cosmic ray antiproton flux with high precision. The interpretation of the upcoming data requires a thorough understanding of the secondary antiproton background. In this work, we employ newly available data of the NA49 experiment at CERN, in order to recalculate the antiproton source term arising from cosmic ray spallations on the interstellar matter. We systematically account for the production of antiprotons via hyperon decay and discuss the possible impact of isospin effects on antineutron production. A detailed comparison of our calculation with the existing literature as well as with Monte Carlo based evaluations of the antiproton source term is provided. Our most important result is an updated pr...
We revisit the model proposed earlier to account for the observed increase in the positron fraction ...
Despite significant efforts over the past decade, the origin of the cosmic ray positron excess has s...
17 pages revtex4; 7 figuresA new generation of upcoming space-based experiments will soon start to p...
The AMS-02 experiment is measuring the cosmic ray antiproton flux with high precision. The interpret...
The AMS-02 experiment is measuring the cosmic ray antiproton flux with high precision. The interpret...
The AMS-02 experiment has ushered cosmic-ray physics into precision era. Using the USINE code and an...
In the present work, the origin of antiprotons observed in cosmic rays (above the atmosphere) is ana...
International audienceTheoretical predictions for the cosmic antiproton spectrum currently fallshort...
Cosmic ray antiprotons provide an important probe for the study of the galactic Dark Matter, as they...
Cosmic-ray antiprotons are a powerful tool for astroparticle physics. While the bulkof measured anti...
The Isotope Matter Antimatter Experiment (IMAX) has detected 16 antiprotons, in the energy range fr...
12 pages, 5 figures; Comments and clarifications added (including an appendix), matches version publ...
If cosmic ray positrons come from a secondary origin, then their production spectrum is correlated w...
A balloon-borne instrument has measured the cosmic-ray antiproton flux between 130 and 320 MeV and s...
We revisit the model proposed earlier to account for the observed increase in the positron fraction ...
Despite significant efforts over the past decade, the origin of the cosmic ray positron excess has s...
17 pages revtex4; 7 figuresA new generation of upcoming space-based experiments will soon start to p...
The AMS-02 experiment is measuring the cosmic ray antiproton flux with high precision. The interpret...
The AMS-02 experiment is measuring the cosmic ray antiproton flux with high precision. The interpret...
The AMS-02 experiment has ushered cosmic-ray physics into precision era. Using the USINE code and an...
In the present work, the origin of antiprotons observed in cosmic rays (above the atmosphere) is ana...
International audienceTheoretical predictions for the cosmic antiproton spectrum currently fallshort...
Cosmic ray antiprotons provide an important probe for the study of the galactic Dark Matter, as they...
Cosmic-ray antiprotons are a powerful tool for astroparticle physics. While the bulkof measured anti...
The Isotope Matter Antimatter Experiment (IMAX) has detected 16 antiprotons, in the energy range fr...
12 pages, 5 figures; Comments and clarifications added (including an appendix), matches version publ...
If cosmic ray positrons come from a secondary origin, then their production spectrum is correlated w...
A balloon-borne instrument has measured the cosmic-ray antiproton flux between 130 and 320 MeV and s...
We revisit the model proposed earlier to account for the observed increase in the positron fraction ...
Despite significant efforts over the past decade, the origin of the cosmic ray positron excess has s...
17 pages revtex4; 7 figuresA new generation of upcoming space-based experiments will soon start to p...