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Gamma-rays from Nearby Clusters: Constraints on Selected Decaying Dark Matter Models

Published 31 Jan 2011 in hep-ph and astro-ph.HE | (1101.5878v2)

Abstract: Recently, the Fermi-LAT collaboration reported upper limits on the GeV gamma-ray flux from nearby clusters of galaxies. Motivated by these limits, we study corresponding constraints on gamma-ray emissions from two specific decaying dark matter models, one via grand unification scale suppressed operators and the other via R-parity violating operators. Both can account for the PAMELA and Fermi-LAT excesses of e\pm. For GUT decaying dark matter, the gamma-rays from the M49 and Fornax clusters, with energy in the range of 1 to 10 GeV, lead to the most stringent constraints to date. As a result, this dark matter is disfavored with conventional model of e\pm background. In addition, it is likely that some tension exists between the Fermi-LAT e\pm excess and the gamma ray constraints for any decaying dark matter model, provided conventional model of e\pm background is adopted. Nevertheless, the GUT decaying dark matter can still solely account for the PAMELA positron fraction excess without violating the gamma-ray constraints. For the gravitino dark matter model with R-parity violation, cluster observations do not give tight constraints. This is because a different e\pm background has been adopted which leads to relatively light dark matter mass around 200 GeV.

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