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Cosmic Rays from Leptophilic Dark Matter Decay via Kinetic Mixing

Ibarra, Alejandro and Ringwald, Andreas and Tran, David and Weniger, Christoph

Keywords

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Abstract

If interpreted in terms of decaying dark matter, the steep rise in the positron fraction of cosmic rays above 10 GeV, as observed by the PAMELA experiment, suggests an underlying production mechanism that favors leptonic channels. We consider a scenario where a portion of the dark matter is made of the gauginos of an unbroken hidden-sector U(1), which interact with the visible sector only through a tiny kinetic mixing. The second component of the dark matter is made of neutralinos, and depending on the mass spectrum, the lightest neutralino or the hidden gaugino becomes unstable and subject to decay. We analyze the cosmic rays, namely the contributions to the positron, the extragalactic gamma-ray and the antiproton flux, which potentially result from these decays and demonstrate that the production of antiprotons can be naturally suppressed. Furthermore, we briefly discuss the apparent double-peak structure of the ATIC data in light of cascade-decaying hidden gauginos, as well as possible signatures at Fermi.

Information

Published
2009 as article
JCAP, 0908 - page(s): 017
Contact
Prof. Dr. Alejandro Ibarra
Type
theoretical work
Links
pdf
spires
www-library.desy.de/…
Related to the research area(s):
B, E
e-Print
0903.3625

Technische Universitaet Muenchen
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