High-resolution radio continuum survey of M33: III. Magnetic fields
arXiv:0809.0419 · doi:10.1051/0004-6361:200810590
Abstract
Using the linearly polarized intensity and polarization angle data at 3.6, 6.2 and 20 cm, we determine variations of Faraday rotation and depolarization across the nearby galaxy M33. A 3-D model of the regular magnetic field is fitted to the observed azimuthal distribution of polarization angles. Faraday rotation, measured between 3.6 and 6.2 cm at a linear resolution of 0.7 kpc, shows more variation in the south than in the north of the galaxy. About 10% of the nonthermal emission from M33 at 3.6 cm is polarized. We estimate the average total and regular magnetic field strengths in M33 as ~ 6.4 and 2.5 G, respectively. Under the assumption that the disk of M33 is flat, the regular magnetic field consists of horizontal and vertical components: however the inferred vertical field may be partly due to a galactic warp. The horizontal field is represented by an axisymmetric (m=0) mode from 1 to 3 kpc radius and a superposition of axisymmetric and bisymmetric (m=0+1) modes from 3 to 5 kpc radius. An excess of differential Faraday rotation in the southern half together with strong Faraday dispersion in the southern spiral arms seem to be responsible for the north-south asymmetry in the observed wavelength dependent depolarization. The presence of an axisymmetric m=0 mode of the regular magnetic field in each ring suggests that a galactic dynamo is operating in M33. The pitch angles of the spiral regular magnetic field are generally smaller than the pitch angles of the optical spiral arms but are twice as big as simple estimates based on the mean-field dynamo theory and M33's rotation curve. Generation of interstellar magnetic fields from turbulent gas motions in M33 is indicated by the equipartition of turbulent and magnetic energy densities.
17 pages, 12 figures, accepted for Astronomy and Astrophysics publication
References in corpus (6)
- Revised equipartition & minimum energy formula for magnetic field strength estimates from radio synchrotron observations
- Magnetism in the spiral galaxy NGC 6946: magnetic arms, depolarization rings, dynamo modes and helical fields
- The Generation and Dissipation of Interstellar Turbulence - Results from Large Scale High Resolution Simulations
- High-resolution radio continuum survey of M33 II. Thermal and nonthermal emission
- High resolution radio continuum survey of M33: I. The radio maps
- Testing MOND with Local Group spiral galaxies
Cited by in corpus (28)
- Magnetic fields in the nearby spiral galaxy IC 342: A multi-frequency radio polarization study
- Galactic Dynamos
- Magnetic Fields in a Sample of Nearby Spiral Galaxies
- Non-linear galactic dynamos: A toolbox
- Discovery of massive star formation quenching by nonthermal effects in the center of NGC 1097
- Properties of the Magneto-ionic Medium in the Halo of M51 revealed by Wide-band Polarimetry
- On the small scale turbulent dynamo in the intracluster medium: A comparison to dynamo theory
- Nearby galaxies in the LOFAR Two-metre Sky Survey II. The magnetic field-gas relation
- Role of Thermal and Non-thermal Processes in the ISM of Magellanic Clouds
- Transition from small-scale to large-scale dynamo in a supernova-driven, multiphase medium
- Statistical tests of galactic dynamo theory
- Using Red Clump Stars to Decompose the Galactic Magnetic Field with Distance
- Magnetic fields in elliptical galaxies: Using the Laing-Garrington effect in radio galaxies and polarized emission from background radio sources
- Constraining regular and turbulent magnetic field strengths in M51 via Faraday depolarization
- Galactic halo bubble magnetic fields and UHECR deflections
- Does the HCN/CO ratio trace the star-forming fraction of gas? I. A comparison with analytical models of star formation
- Magnetic fields and cosmic rays in M31. II. Strength and distribution of the magnetic field components
- Influence of Magnetic Fields on the Gas Rotation in the Galaxy
- Evolution of thermal and nonthermal radio continuum emission on kpc scales--Predictions for SKA
- Radio-FIR correlation- A probe into cosmic ray propagation in the nearby galaxy IC 342
- Reconciling the magnetic field in central disc galaxies with the dynamical mass using the cosmological simulations
- Radio emission during the formation of stellar clusters in M33
- Galactic magnetic fields II. Applying the model to nearby galaxies
- Bayesian approach to equipartition estimation of magnetic field strength
- The Relative Importance of Thermal Gas, Radiation, and Magnetic Pressures Around Star-Forming Regions in Normal Galaxies and Dusty Starbursts
- The fine structure of the mean magnetic field in M31
- Synthesizing Observations and Theory to Understand Galactic Magnetic Fields: Progress and Challenges
- How non-thermal pressure impacts the modelling of star formation in galaxy formation simulations