Extended Anomalous Foreground Emission in the WMAP 3-Year Data
arXiv:0712.1038 · doi:10.1086/587862
Abstract
We study the spectral and morphological characteristics of the diffuse Galactic emission in the WMAP temperature data using a template-based multi-linear regression, and obtain the following results. 1. We confirm previous observations of a bump in the dust-correlated spectrum, consistent with the Draine & Lazarian spinning dust model. 2. We also confirm the "haze" signal in the inner Galaxy, and argue that it does not follow a free-free spectrum as first thought, but instead is synchrotron emission from a hard electron cosmic-ray population. 3. In a departure from previous work, we allow the spectrum of Halpha-correlated emission (which is used to trace the free-free component) to float in the fit, and find that it does not follow the expected free-free spectrum. Instead there is a bump near 50 GHz, modifying the spectrum at the 20% level, which we speculate is caused by spinning dust in the warm ionized medium. 4. The derived cross-correlation spectra are not sensitive to the map zero points, but are sensitive to the choice of CMB estimator. In cases where the CMB estimator is derived by minimizing variance of a linear combination of the WMAP bands, we show that a bias proportional to the cross-correlation of each template and the true CMB is always present. This bias can be larger than any of the foreground signals in some bands. 5. Lastly, we consider the frequency coverage and sensitivity of the Planck mission, and suggest linear combination coefficients for the CMB template that will reduce both the statistical and systematic uncertainty in the synchrotron and haze spectra by more than an order of magnitude.
14 pages, 10 figures; submitted to ApJ
References in corpus (1)
Cited by in corpus (23)
- A Theory of Dark Matter
- Non-Abelian Dark Sectors and Their Collider Signatures
- Multi-Component Dark Matter
- Candidates for Inelastic Dark Matter
- Bounds on Cross-sections and Lifetimes for Dark Matter Annihilation and Decay into Charged Leptons from Gamma-ray Observations of Dwarf Galaxies
- Nonabelian dark matter: models and constraints
- Dark Matter Signals from Cascade Annihilations
- High Energy Positrons and the WMAP Haze from Exciting Dark Matter
- Discriminating different scenarios to account for the cosmic excess by synchrotron and inverse Compton radiation
- Dark matter and pulsar signals for Fermi LAT, PAMELA, ATIC, HESS and WMAP data
- PAMELA, DAMA, INTEGRAL and Signatures of Metastable Excited WIMPs
- Radio constraints on dark matter annihilation in the galactic halo and its substructures
- Substructure Boosts to Dark Matter Annihilation from Sommerfeld Enhancement
- TASI 2008 Lectures on Dark Matter
- Constraining Spinning Dust Parameters with the WMAP Five-Year Data
- Search for Dark Matter
- Muon Fluxes From Dark Matter Annihilation
- Identification of Spinning Dust in Halpha-Correlated Microwave Emission
- R-parity preserving super-WIMP decays
- Testing the Dark Matter Interpretation of the PAMELA Excess through Measurements of the Galactic Diffuse Emission
- Cosmic strings interacting with dark strings
- Dark Matter Astrophysics
- Neutralino Dark Matter as the Source of the WMAP Haze