Constraining the regular Galactic Magnetic Field with the 5-year WMAP polarization measurements at 22 GHz
arXiv:1006.5573 · doi:10.1051/0004-6361/200912733
Abstract
[ABRIDGED] The knowledge of the regular component of the Galactic magnetic field gives important information about the structure and dynamics of the Milky Way, as well as constitutes a basic tool to determine cosmic rays trajectories. It can also provide clear windows where primordial magnetic fields could be detected. We want to obtain the regular (large scale) pattern of the magnetic field distribution of the Milky Way that better fits the polarized synchrotron emission as seen by the 5-year WMAP data at 22 GHz. We have done a systematic study of a number of Galactic magnetic field models: axisymmetric, bisymmetric, logarithmic spiral arms, concentric circular rings with reversals and bi-toroidal. We have explored the parameter space defining each of these models using a grid-based approach. In total, more than one million models are computed. The model selection is done using a Bayesian approach. For each model, the posterior distributions are obtained and marginalised over the unwanted parameters to obtain the marginal 1-D probability distribution functions. In general, axisymmetric models provide a better description of the halo component, although attending to their goodness-of-fit, the rest of the models cannot be rejected. In the case of disk component, the analysis is not very sensitive for obtaining the disk large scale structure, because of the effective available area (less than 8% of the whole map and less than 40% of the disk). Nevertheless, within a given family of models, the best-fit parameters are compatible with those found in the literature. The family of models that better describes the polarized synchrotron halo emission is the axisymmetric one, with magnetic spiral arms with a pitch angle of ~24 degrees, and a strong vertical field of 1 microG at z ~ 1 kpc. When a radial variation is fitted, models require fast variations.
14 pages, 9 figures. Accepted for publication in A&A
References in corpus (14)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Data Processing, Sky Maps, and Basic Results
- Three Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Polarization Analysis
- Radio observational constraints on Galactic 3D-emission models
- The outer scale of turbulence in the magneto-ionized Galactic interstellar medium
- Separation of anomalous and synchrotron emissions using WMAP polarization data
- Rotation Measures of Extragalactic Sources Behind the Southern Galactic Plane: New Insights into the Large-Scale Magnetic Field of the Inner Milky Way
- The Large Scale Cosmic-Ray Anisotropy as Observed with Milagro
- New pulsar rotation measures and the Galactic magnetic field
- The spatial energy spectrum of magnetic fields in our Galaxy
- Observational constraints on models for the interstellar magnetic field in the Galactic disk
- Constraining models of the large scale Galactic magnetic field with WMAP5 polarization data and extragalactic Rotation Measure sources
- The Galactic distribution of magnetic fields in molecular clouds and HII regions
- Magnetic field near the central region of the Galaxy: Rotation measure of extragalactic sources
- Magnetic Field Structure from Synchrotron Polarization
Cited by in corpus (14)
- Planck intermediate results. XIX. An overview of the polarized thermal emission from Galactic dust
- Deriving global structure of the Galactic Magnetic Field from Faraday Rotation Measures of extragalactic sources
- Magnetic Fields in the Milky Way
- IMAGINE: A comprehensive view of the interstellar medium, Galactic magnetic fields and cosmic rays
- New Constraints on the Galactic Halo Magnetic Field using Rotation Measures of Extragalactic Sources Towards the Outer Galaxy
- Local Bubble contribution to the 353-GHz dust polarized emission
- SOFIA/HAWC+ traces the magnetic fields in NGC 1068
- The Magnetic Field Across the Molecular Warped Disk of Centaurus A
- Magnetic fields and cosmic ray anisotropies at TeV energies
- Constraining Galactic Magnetic Field Models with Starlight Polarimetry
- Galactic halo bubble magnetic fields and UHECR deflections
- Influence of Magnetic Fields on the Gas Rotation in the Galaxy
- Hemispheric handedness in the Galactic synchrotron polarization foreground
- Magnetic flux density from the relative circular motion of stars and partially ionized gas in the Galaxy mid-plane vicinity