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Spectral Gamma-ray Signatures of Cosmological Dark Matter Annihilation
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Spectral Gamma-ray Signatures of Cosmological Dark Matter Annihilation
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We propose a new signature for weakly interacting massive particle (WIMP) dark matter, a spectral feature in the diffuse extragalactic gamma-ray radiation. This feature, a sudden drop of the gamma-ray intensity at an energy corresponding to the WIMP mass, comes from the asymmetric distortion of the line due to WIMP annihilation into two gamma-rays caused by the cosmological redshift. Unlike other proposed searches for a line signal, this method is not very sensitive to the exact dark matter density distribution in halos and subhalos. The only requirement is that the mass distribution of substructure on small scales follows approximately the Press-Schechter law, and that smaller halos are on the average denser than large halos, which is a generic outcome of N-body simulations of Cold Dark Matter, and which has observational support. The upcoming Gamma-ray Large Area Space Telescope (GLAST) will be eminently suited to search for these spectral features. For numerical examples, we use rates computed for supersymmetric particle dark matter, where a detectable signal is possible.
Forward citations
Cited by 2 Pith papers
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Cosmological signals of dark matter semi-annihilation
Semi-annihilating dark matter in cosmological structures yields a boosted flux that can rival or exceed the galactic signal, and structure formation requires ⟨σ₂→₁v⟩ ≤ 4.2×10⁻¹⁹ (mχ/1 GeV) cm³/s.
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Anisotropy of Cosmic Background Photons from Annihilating/Decaying Dark Matter
A comprehensive formulation is given for the angular power spectrum of photons from dark matter annihilation or decay, stressing that detector energy resolution is essential for accurate evaluation of line photon signals.
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