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Probing heavy dark matter decays with multi-messenger astrophysical data

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arxiv 1907.11671 v2 pith:LX5FAG6Y submitted 2019-07-26 astro-ph.HE astro-ph.COhep-ph

Probing heavy dark matter decays with multi-messenger astrophysical data

classification astro-ph.HE astro-ph.COhep-ph
keywords darkmattertextttmassesspectraconservativeconstraintsdecays
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We set conservative constraints on decaying dark matter particles with masses spanning a very wide range ($10^4-10^{16}$ GeV). For this we use multimessenger observations of cosmic-ray (CR) protons/antiprotons, electrons/positrons, neutrinos/antineutrinos and gamma rays. Focusing on decays into the $\bar{b}b$ channel, we simulate the spectra of dark matter yields by using the Dokshitzer-Gribov-Lipatov-Altarelli-Parisi equations and the $\texttt{Pythia}$ package. We then propagate the CRs of dark matter origin till Earth by using the state-of-the-art numerical frameworks $\texttt{CRPropa}$, $\texttt{GALPROP}$ and $\texttt{HelMod}$ for the solution of the CR transport equation in the extragalactic, Galactic region and the heliosphere, respectively. Conservative limits are obtained by requiring that the predicted dark matter spectra at Earth be less than the observed CR spectra. Overall, we exclude dark matter lifetimes of $10^{28}$ s or shorter for all the masses investigated in this work. The most stringent constraints reach $10^{30}$ s for very heavy dark matter particles with masses in the range $10^{11}-10^{14}$ GeV.

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