Decaying Dark Matter as a Probe of Unification and TeV Spectroscopy
arXiv:0904.2789 · doi:10.1103/PhysRevD.80.055011
Abstract
In supersymmetric unified theories the dark matter particle can decay, just like the proton, through grand unified interactions with a lifetime of order of 10^{26} sec. Its decay products can be detected by several experiments -- including Fermi, HESS, PAMELA, ATIC, and IceCube -- opening our first direct window to physics at the TeV scale and simultaneously at the unification scale 10^{16} GeV. We consider possibilities for explaining the electron/positron spectra observed by HESS, PAMELA, and ATIC, and the resulting predictions for the gamma-ray, electron/positron, and neutrino spectra as will be measured, for example, by Fermi and IceCube. The discovery of an isotropic, hard gamma ray spectral feature at Fermi would be strong evidence for dark matter and would disfavor astrophysical sources such as pulsars. Substructure in the cosmic ray spectra probes the spectroscopy of new TeV-mass particles. For example, a preponderance of electrons in the final state can result from the lightness of selectrons relative to squarks. Decaying dark matter acts as a sparticle injector with an energy reach potentially higher than the LHC. The resulting cosmic ray flux depends only on the values of the weak and unification scales.
7 pages, 5 figures, 1 table, New Refs added
References in corpus (15)
- Observation of an anomalous positron abundance in the cosmic radiation
- A Theory of Dark Matter
- Decaying Dark Matter can explain the electron/positron excesses
- PAMELA data and leptonically decaying dark matter
- Gamma Ray Spectrum from Gravitino Dark Matter Decay
- Gamma rays and positrons from a decaying hidden gauge boson
- Antimatter Signatures of Gravitino Dark Matter Decay
- Dark matter and pulsar signals for Fermi LAT, PAMELA, ATIC, HESS and WMAP data
- High-energy Cosmic-Ray Positrons from Hidden-Gauge-Boson Dark Matter
- The Leptonic Higgs as a Messenger of Dark Matter
- Decaying Hidden Gauge Boson and the PAMELA and ATIC/PPB-BETS Anomalies
- Gravitino Dark Matter and the Cosmic Lithium Abundances
- PAMELA/ATIC anomaly from the meta-stable extra dark matter component and the leptophilic Yukawa interaction
- R-parity preserving super-WIMP decays
- PAMELA/ATIC Anomaly from Exotic Mediated Dark Matter Decay