Can Astrophysical Gamma Ray Sources Mimic Dark Matter Annihilation in Galactic Satellites?
arXiv:astro-ph/0610731 · doi:10.1086/517882
Abstract
The nature of the cosmic dark matter is unknown. The most compelling hypothesis is that dark matter consists of weakly interacting massive particles (WIMPs) in the 100 GeV mass range. Such particles would annihilate in the galactic halo, producing high-energy gamma rays which might be detectable in gamma ray telescopes such as the GLAST satellite. We investigate the ability of GLAST to distinguish between WIMP annihilation sources and astrophysical sources. Focusing on the galactic satellite halos predicted by the cold dark matter model, we find that the WIMP gamma-ray spectrum is nearly unique; separation of the brightest WIMP sources from known source classes can be done in a convincing way by including spectral and spatial information. Candidate WIMP sources can be further studied with Imaging Atmospheric Cerenkov Telescopes. Finally, Large Hadron Collider data might have a crucial impact on the study of galactic dark matter.
4 pages, 5 figures, Accepted for publication in ApJ Letters
References in corpus (4)
Cited by in corpus (28)
- A blueprint for detecting supersymmetric dark matter in the Galactic halo
- The Dark Matter Annihilation Signal from Galactic Substructure: Predictions for GLAST
- The Most Dark Matter Dominated Galaxies: Predicted Gamma-ray Signals from the Faintest Milky Way Dwarfs
- Fitting the Gamma-Ray Spectrum from Dark Matter with DMFIT: GLAST and the Galactic Center Region
- Galactic Substructure and Dark Matter Annihilation in the Milky Way Halo
- Gamma Rays from Clusters and Groups of Galaxies: Cosmic Rays versus Dark Matter
- Extragalactic Inverse Compton Light from Dark Matter Annihilation and the Pamela Positron Excess
- The Gamma-Ray-Flux Probability Distribution Function from Galactic Halo Substructure
- Z' Mediated Dark Matter Models for the Galactic Center Gamma-Ray Excess
- Angular Signatures of Annihilating Dark Matter in the Cosmic Gamma-Ray Background
- Statistical Issues in Astrophysical Searches for Particle Dark Matter
- Annihilating Asymmetric Dark Matter
- Galactic Center Gamma-Ray Excess through a Dark Shower
- Reconstructing WIMP properties with neutrino detectors
- Constraining Dark Matter in Galactic Substructure
- Supersymmetry in Elementary Particle Physics
- The impact of propagation uncertainties on the potential Dark Matter contribution to the Fermi LAT mid-latitude gamma-ray data
- 0FGL J1830.3+0617: A Fermi Blazar Near the Galactic Plane
- Gravitational Nanolensing from Subsolar Mass Dark Matter Halos
- The Dark Knight Falters
- Dark Matter and Particle Physics
- On the gamma-ray emission from the core of the Sagittarius dwarf galaxy
- Can galactic dark matter substructure contribute to the cosmic gamma-ray anisotropy?
- Gamma ray and Neutrino fluxes from a cosmological dark matter simulation
- Millisecond Pulsars in Globular Clusters and Implications for the Galactic Center Gamma-Ray Excess
- Probing the millisecond pulsar origin of the -ray excess in the Galactic centre with LISA
- Searches for Particle Dark Matter with the GLAST Large Area Telescope
- Machine-Learned Dark Matter Subhalo Candidates in the 4FGL-DR2: Search for the Perturber of the GD-1 Stream