Ongoing massive star formation in the bulge of M51
arXiv:astro-ph/0112034 · doi:10.1086/338273
Abstract
We studied the HST-WFPC2 observations of the inner kpc of the interacting galaxy M51 in six bands from 2550 to 8140 Angstrom. The images show an oval shaped area ("bulge") of 11x16 arcsec or 450x650 pc around the nucleus, dominated by a smooth population of old stars with overimposed dust lanes. We found 30 bright point-like sources in the bulge of M51; many of these are bright in the UV. They are located in elongated "strings" which follow the general pattern of the dust lanes. The spectral energy distributions of the pointsources are compared with those of clusters or single stars. We present arguments that the pointsources are isolated massive stars or small groups of a few massive stars. The energy distributions are best fitted with those of single stars with 4000<Teff<50000 K, 4.2<log L/Lsun<7.2, and 12<Mstar<200 Msun. We have derived upper limits to the total mass of low mass stars that could be "hiding" within the point sources. For the bluest sources the upper limit is only a few hundred Msun. We conclude that massive stars are formed outside clusters (or in very low mass clusters) in the bulge of M51. The estimated star formation rate in the bulge is 1 to 2x10^(-3) Msun/yr. This star formation rate could be sustained for about 200 to 400 Myrs, suggesting that the ongoing massive star formation in the bulge of M51 is fed/triggered by the interaction with its companion about 400 Mrs ago. Theoretical cloud-models show that CO is destroyed in low extinction clouds near the bright nucleus of M51, so that H_2, [OI] and [CII] are the dominants coolants. This condition favors the formation of massive stars, in agreement with the observations. This mode of massive-star formation in the bulge of M51 may resemble the star formation in the early Universe, when the CO and dust contents were low due to the low metallicity.
28 pages, 7 PostScript figures, uses aaspp4.sty and epsfig.sty. Accepted for publication in ApJ, V566, February 20, 2002
References in corpus (4)
Cited by in corpus (23)
- Optimization of Starburst99 for Intermediate-Age and Old Stellar Populations
- The PdBI Arcsecond Whirlpool Survey (PAWS). I. A Cloud-Scale/Multi-Wavelength View of the Interstellar Medium in a Grand-Design Spiral Galaxy
- The Origin of Massive O-type Field Stars. Part II: Field O stars as runaways
- The Formation of Stellar Clusters in Turbulent Molecular Clouds: Effects of the Equation of State
- Effects of the Equation of State on the Formation of Star Clusters
- Clusters in the inner spiral arms of M51: the cluster IMF and the formation history
- Star Cluster Formation and Disruption Time-Scales -- I. An empirical determination of the disruption time of star clusters in four galaxies
- Infrared stellar populations in the central parts of the Milky Way galaxy
- The Mass Function of Super Giant Molecular Complexes and Implications for Forming Young Massive Star Clusters in the Antennae (NGC 4038/39)
- The Globular Cluster Systems of Five Nearby Spiral Galaxies: New Insights from Hubble Space Telescope Imaging
- The Nuclear Near-Infrared Spectral Properties of Nearby Galaxies
- The Luminous X-ray Source Population in M51 Observed with Chandra
- The Stellar Content of Nearby Star-Forming Galaxies. III. Unravelling the Nature of the Diffuse Ultraviolet Light
- Properties of Resolved Star Clusters in M51
- Mapping the Recent Star Formation History of the Disk of M51
- Vestige of the Star Cluster Burst in M51
- An interesting candidate for isolated massive star formation in the Small Magellanic Cloud
- Hubble Space Telescope Pixel Analysis of the Interacting Face-on Spiral Galaxy NGC 5194 (M51A)
- Spatially-resolved Stellar Population Properties of the M 51-NGC 5195 System from Multi-wavelength Photometric Data
- A Method to Extract Spatially Resolved Polycyclic Aromatic Hydrocarbon Emission from Spitzer Spectra: Application to M51
- Physical Properties of H II Regions in M51 from Spectroscopic Observations
- Stacking Star Clusters in M51: Searching for Faint X-Ray Binaries
- Exploring extreme conditions for star formation: a deep search for molecular gas in the Leo ring