Testing the Dark Matter Annihilation Model for the WMAP Haze
arXiv:1004.1189 · doi:10.1111/j.1365-2966.2011.18658.x
Abstract
Analyses have found a "haze" of anomalous microwave emission surrounding the Galactic Center in the WMAP sky maps. A recent study using Fermi data detected a similar haze in the gamma-ray. Several studies have modeled these hazes as radiation from the leptonic byproducts of dark matter annihilations, and arguably no convincing astrophysical alternative has been suggested. We discuss the characteristics of astrophysical cosmic ray sources that could potentially explain this microwave and gamma-ray emission. The most promising astrophysical scenarios involve cosmic ray sources that are clustered such that many fall within ~1 kpc of the Galactic Center. For example, we show that several hundred Galactic Center supernovae in the last million years plus a diffusion-hardened electron spectrum may be consistent with present constraints on this emission. Alternatively, it could be due to a burst of activity probably associated with Sagittarius A* occurring ~1 Myr ago and producing >10^51 erg in cosmic ray electrons. Different models predict different trends for the spectral index of the microwave and gamma-ray spectrum as a function of angle from the Galactic Center that should be robust to cosmic ray propagation uncertainties. In particular, if the haze is from dark matter annihilations, it should have a very hard microwave and gamma-ray spectrum for which the spectral shape does not change significantly with angle, which we argue would be difficult to achieve with any astrophysical mechanism. Observations with the Planck and Fermi satellites can distinguish between viable haze models using these signatures.
15 pages, 7 figures, accepted to MNRAS
References in corpus (28)
- Observation of an anomalous positron abundance in the cosmic radiation
- The Aquarius Project: the subhalos of galactic halos
- A Theory of Dark Matter
- Cosmic-ray propagation and interactions in the Galaxy
- Are the Magellanic Clouds on their First Passage about the Milky Way?
- The Parkes multibeam pulsar survey: VI. Discovery and timing of 142 pulsars and a Galactic population analysis
- Pulsars as the Sources of High Energy Cosmic Ray Positrons
- Diffuse Galactic continuum gamma rays. A model compatible with EGRET data and cosmic-ray measurements
- Optical Flares from the Tidal Disruption of Stars by Massive Black Holes
- Seven-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Galactic Foreground Emission
- The Milky Way's Kiloparsec Scale Wind: A Hybrid Cosmic-Ray and Thermally Driven Outflow
- The Fermi Haze: A Gamma-Ray Counterpart to the Microwave Haze
- Fueling Low-Level AGN Activity Through the Stochastic Accretion of Cold Gas
- Masses for the Local Group and the Milky Way
- Extended Anomalous Foreground Emission in the WMAP 3-Year Data
- Magnetic Fields in Starburst Galaxies and The Origin of the FIR-Radio Correlation
- Evidence Of Dark Matter Annihilations In The WMAP Haze
- Attenuation of VHE gamma rays by the Milky Way interstellar radiation field
- The Case for a 700+ GeV WIMP: Cosmic Ray Spectra from PAMELA, Fermi and ATIC
- Dark matter response to galaxy formation
- Galactic Substructure and Dark Matter Annihilation in the Milky Way Halo
- The PAMELA Positron Excess from Annihilations into a Light Boson
- Discriminating different scenarios to account for the cosmic excess by synchrotron and inverse Compton radiation
- Prospects For Detecting Dark Matter With GLAST In Light Of The WMAP Haze
- Can the WMAP Haze really be a signature of annihilating neutralino dark matter?
- Pulsars as the Source of the WMAP Haze
- The Fermi gamma-ray spectrum of the inner galaxy: Implications for annihilating dark matter
- Morphological Tests of the Pulsar and Dark Matter Interpretations of the WMAP Haze
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- Constraints on X-ray Emissions from the Reionization Era
- Planck Intermediate Results. IX. Detection of the Galactic haze with Planck
- The Fermi Gamma-Ray Haze from Dark Matter Annihilations and Anisotropic Diffusion
- The Fermi Bubbles Revisited
- Astrophysical limits on light NMSSM neutralinos
- Magnetic substructure in the northern Fermi Bubble revealed by polarized WMAP emission
- Fermi bubble -rays as a result of diffusive injection of Galactic cosmic rays
- Systematic effects in the extraction of the 'WMAP haze'
- Multi-messenger constraints on dark matter annihilation into electron-positron pairs
- Cosmic ray backgrounds for dark matter indirect detection