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Mirage in the Sky: Non-thermal Dark Matter, Gravitino Problem, and Cosmic Ray Anomalies

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arxiv 0904.3773 v1 pith:UOT3XVBK submitted 2009-04-24 hep-ph astro-ph.CO

classification hep-phastro-ph.CO
keywords darkmattergravitinocross-sectionlargemodulianomaliescosmic
verification ladder T0 review T1 audit T2 compute T3 formal

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Recent anomalies in cosmic rays could be due to dark matter annihilation in our galaxy. In order to get the required large cross-section to explain the data while still obtaining the right relic density, we rely on a non standard thermal history between dark matter freeze-out and Big-Bang Nucleosynthesis (BBN). We show that through a reheating phase from the decay of a heavy moduli or even the gravitino, we can produce the right relic density of dark matter if its self-annihilation cross-section is large enough. In addition to fitting the recent data, this scenario solves the cosmological moduli and gravitino problems. We illustrate this mechanism with a specific example in the context of U(1)_{B-L} extended MSSM where supersymmetry is broken via mirage mediation. These string motivated models naturally contain heavy moduli decaying to the gravitino, whose subsequent decay to the LSP can reheat the universe at a low temperature. The right-handed sneutrino and the B-L gaugino can both be viable dark matter candidates with large cross-section. They are leptophilic because of B-L charges. We also show that it is possible to distinguish the non-thermal from the thermal scenario (using Sommerfeld enhancement) in direct detection experiments for certain regions of parameter space.

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Cited by 2 Pith papers

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    The paper forecasts that future gravitational wave observatories could infer dark matter mass and annihilation cross-section from early matter-domination suppressions in the inflationary gravitational wave spectrum, c...

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