Fermi Constrains Dark Matter Origin of High Energy Positron Anomaly
arXiv:0912.1203 · doi:10.1088/2041-8205/712/1/L53
Abstract
Fermi measurements of the high-latitude gamma-ray background strongly constrain a decaying-dark-matter origin for the 1--100 GeV Galactic positron anomaly measured with PAMELA. Inverse-Compton scattering of the microwave background by the emergent positrons produces a bump in the diffuse 100-200 MeV gamma-ray background that would protrude from the observed background at these energies. The positrons are thus constrained to emerge from the decay process at a typical energy between ~100 GeV and ~250 GeV. By considering only gamma-ray emission of the excess positrons and electrons, we derive a minimum diffuse gamma-ray flux that, apart from the positron spectrum assumed, is independent of the actual decay modes. Any gamma-rays produced directly by the dark-matter decay leads to an additional signal that make the observational limits more severe. A similar constraint on the energy of emergent positrons from annihilation in dark-matter substructures is argued to exist, according to recent estimates of enhancement in low-mass dark-matter substructures, and improved simulations of such substructure will further sharpen this constraint.
ApJ Letters, in press, revised version
References in corpus (15)
- Observation of an anomalous positron abundance in the cosmic radiation
- A Theory of Dark Matter
- Measurement of the Cosmic Ray e+ plus e- spectrum from 20 GeV to 1 TeV with the Fermi Large Area Telescope
- A new measurement of the antiproton-to-proton flux ratio up to 100 GeV in the cosmic radiation
- On possible interpretations of the high energy electron-positron spectrum measured by the Fermi Large Area Telescope
- Evidence for a Triaxial Milky Way Dark Matter Halo from the Sagittarius Stellar Tidal Stream
- The shapes, orientation, and alignment of Galactic dark matter subhalos
- Bounds on Cross-sections and Lifetimes for Dark Matter Annihilation and Decay into Charged Leptons from Gamma-ray Observations of Dwarf Galaxies
- The PAMELA and ATIC Excesses From a Nearby Clump of Neutralino Dark Matter
- Discriminating different scenarios to account for the cosmic excess by synchrotron and inverse Compton radiation
- Exploring Dark Matter with Milky Way substructure
- Decaying Dark Matter as a Probe of Unification and TeV Spectroscopy
- ATIC, PAMELA, HESS, Fermi and nearby Dark Matter subhalos
- Cosmic Gamma-ray from Inverse Compton Process in Unstable Dark Matter Scenario
- Dynamics of Mesoscale Magnetic Field in Diffusive Shock Acceleration