A few references added and a few typos corrected, matches version published on JCAPInternational audienceWe systematically analyze the impact of current and foreseen cosmic ray antiproton measurements on the properties of Dark Matter (DM). We find that: 1) The current data from PAMELA impose constraints on annihilating and decaying DM which are similar to (or even slightly stronger than) the most stringent bounds coming from Fermi gamma rays, for hadronic channels and with fiducial choices for the astrophysical parameters. 2) The upcoming data from AMS-02 have the power to improve these constraints by slightly less than one order of magnitude and even to probe the thermal relic DM in the range 30-200 GeV, for hadronic channels. However, wit...
International audienceBased on 4 yr AMS-02 antiproton data, we present bounds on the dark matter (DM...
International audienceBased on 4 yr AMS-02 antiproton data, we present bounds on the dark matter (DM...
The latest years have seen steady progresses in weakly interacting massive particle dark matter (DM)...
A few references added and a few typos corrected, matches version published on JCAPInternational aud...
A few references added and a few typos corrected, matches version published on JCAPInternational aud...
A few references added and a few typos corrected, matches version published on JCAPInternational aud...
We systematically analyze the impact of current and foreseen cosmic ray antiproton measurements on t...
International audienceBased on 4 yr AMS-02 antiproton data, we present bounds on the dark matter (DM...
International audienceBased on 4 yr AMS-02 antiproton data, we present bounds on the dark matter (DM...
International audienceBased on 4 yr AMS-02 antiproton data, we present bounds on the dark matter (DM...
International audienceBased on 4 yr AMS-02 antiproton data, we present bounds on the dark matter (DM...
International audienceBased on 4 yr AMS-02 antiproton data, we present bounds on the dark matter (DM...
International audienceBased on 4 yr AMS-02 antiproton data, we present bounds on the dark matter (DM...
International audienceBased on 4 yr AMS-02 antiproton data, we present bounds on the dark matter (DM...
International audienceBased on 4 yr AMS-02 antiproton data, we present bounds on the dark matter (DM...
International audienceBased on 4 yr AMS-02 antiproton data, we present bounds on the dark matter (DM...
International audienceBased on 4 yr AMS-02 antiproton data, we present bounds on the dark matter (DM...
The latest years have seen steady progresses in weakly interacting massive particle dark matter (DM)...
A few references added and a few typos corrected, matches version published on JCAPInternational aud...
A few references added and a few typos corrected, matches version published on JCAPInternational aud...
A few references added and a few typos corrected, matches version published on JCAPInternational aud...
We systematically analyze the impact of current and foreseen cosmic ray antiproton measurements on t...
International audienceBased on 4 yr AMS-02 antiproton data, we present bounds on the dark matter (DM...
International audienceBased on 4 yr AMS-02 antiproton data, we present bounds on the dark matter (DM...
International audienceBased on 4 yr AMS-02 antiproton data, we present bounds on the dark matter (DM...
International audienceBased on 4 yr AMS-02 antiproton data, we present bounds on the dark matter (DM...
International audienceBased on 4 yr AMS-02 antiproton data, we present bounds on the dark matter (DM...
International audienceBased on 4 yr AMS-02 antiproton data, we present bounds on the dark matter (DM...
International audienceBased on 4 yr AMS-02 antiproton data, we present bounds on the dark matter (DM...
International audienceBased on 4 yr AMS-02 antiproton data, we present bounds on the dark matter (DM...
International audienceBased on 4 yr AMS-02 antiproton data, we present bounds on the dark matter (DM...
International audienceBased on 4 yr AMS-02 antiproton data, we present bounds on the dark matter (DM...
The latest years have seen steady progresses in weakly interacting massive particle dark matter (DM)...