Star formation in M33: multiwavelength signatures across the disk
arXiv:0810.0473 · doi:10.1051/0004-6361:200810566
Abstract
Aims. We use different tracers, such as Ha, ultraviolet (UV), and infrared (IR) emissions at various wavelengths, to study the dust and star-formation (SF) conditions throughout the disk of M33. Methods. We derive the radial distribution of dust, of the old and young stellar population using Spitzer and GALEX data, complemented by ground-based optical data and available surveys of atomic and molecular gas. We separate the contribution of discrete sources to the IR brightness from the diffuse emission. Results. At 8 and 24 um, discrete sources account for 40% of the IR emission in the innermost 3 kpc, and for 20% further out. We find that stochastic emission from very small grains in the diffuse interstellar medium accounts for only 10% of the diffuse 24 um emission, and that dusty circumstellar shells of unresolved, evolved AGB stars (carbon stars) are a viable alternative. The 8 um profile suggests that PAH emission declines faster with radius than the dust continuum. In annular regions, 0.24 kpc wide, we find a mean extinction value for stellar continuum AV = 0.25 mag with a weak dependence on radius, consistent with the shallow metallicity gradient observed. Dust opacity derived from the 160 um emission decreases instead by a factor 10 from the center to edge of the SF disk. Conclusions. Using extinction corrected UV and Ha maps we find the global SF rate in M33, over the last 100 Myr, to be 0.45 +- 0.10 M yr-1. FIR (far-IR) and TIR (total-IR) luminosities can trace SF even though a high conversion factor is required to recover the effective rate. If carbon stars are powering the diffuse 24 um emission in M33 this can trace star formation 1 Gyr ago and provide a more complete view of the SF history of the galaxy. [abridged]
14 pages, 13 figures, 3 tables, accepted by A&A
References in corpus (15)
- Infrared Emission from Interstellar Dust. IV. The Silicate-Graphite-PAH Model in the Post-Spitzer Era
- The GALEX Ultraviolet Atlas of Nearby Galaxies
- A Search for Extended Ultraviolet Disk (XUV-disk) Galaxies in the Local Universe
- The M33 Metallicity Project: Resolving the Abundance Gradient Discrepancies in M33
- Ultraviolet Through Far-Infrared Spatially Resolved Analysis of the Recent Star Formation in M81 (NGC3031)
- The metallicity gradient of M 33: chemical abundances of HII regions
- High-resolution radio continuum survey of M33 II. Thermal and nonthermal emission
- The stellar halo and outer disk of M33
- Star formation in M33: Spitzer photometry of discrete sources
- The building up of the disk galaxy M33 and the evolution of the metallicity gradient
- The M33 Variable Star Population Revealed by Spitzer
- The Nature of Infrared Emission in the Local Group Dwarf Galaxy NGC 6822 As Revealed by Spitzer
- Bar imprints on the inner gas kinematics of M33
- High resolution radio continuum survey of M33: I. The radio maps
- Far-infrared dust properties in the Galaxy and the Magellanic Clouds