The Vast Population of Wolf-Rayet and Red Supergiant Stars in M101: I. Motivation and First Results
arXiv:1302.6631 · doi:10.1088/0004-6256/146/6/162
Abstract
M101 is an ideal target in which to test predictions of massive star birth and evolution. The large abundance gradient across M101 (a factor of 20) suggests that many more WR stars must be found in the inner parts of this galaxy than in the outer regions. Many HII regions and massive star-forming complexes have been identified in M101; they should be rich in WR stars, and surrounded by RSG stars. Finally, the Wolf-Rayet stars in M101 may be abundant enough for one to explode as a Type Ib or Ic supernova and/or GRB within a generation. The clear identification of the progenitor of a Type Ib or Ic supernova as a WR star would be a major confirmation of current stellar evolution theory. Motivated by these considerations, we have used the Hubble Space Telescope to carry out a deep, HeII optical narrowband imaging survey of the massive star populations in the ScI spiral galaxy M101. Combined with archival broadband images, we were able to image almost the entire galaxy with the unprecedented depth and resolution that only HST affords. We describe the extent of the survey and our images, as well as our data reduction procedures. A detailed study of a field east of the center of M101, containing the giant star-forming region NGC 5462, demonstrates how we find candidates, their properties and spatial distribution, and how we rule out most contaminants. The spatial distributions of the WR and RSG stars near a giant star-forming complex are strikingly different. WR stars dominate the complex core, while RSG dominate the complex halo. Future papers in this series will describe and catalog more than a thousand WR and RSG candidates that are detectable in our images, as well as spectra of many of those candidates.
33 pages, 10 Figures, submitted to the Astronomical Journal
References in corpus (11)
- Physical Properties of Wolf-Rayet Stars
- Long gamma-ray bursts and core-collapse supernovae have different environments
- The death of massive stars - I. Observational constraints on the progenitors of type II-P supernovae
- The empirical metallicity dependence of the mass-loss rate of O- and early B-type stars
- Grids of stellar models with rotation II. WR populations and supernovae/GRB progenitors at Z = 0.014
- Long Gamma-Ray Bursts and Type Ic Core Collapse Supernovae Have Similar Locations in Hosts
- On the association between core-collapse supernovae and HII regions
- The Wolf-Rayet Content of M31
- A survey of the Wolf-Rayet population of the barred, spiral galaxy NGC 1313
- Do Wolf-Rayet stars have similar locations in hosts as type Ib/c supernovae and long gamma-ray bursts?
- Age Dating Stellar Populations in the Near Infrared: An absolute age indicator from the presence/absence of red supergiants
Cited by in corpus (15)
- Observational clues to the progenitors of Type-Ia supernovae
- A luminous, blue progenitor system for a type-Iax supernova
- Metamorphosis of SN 2014C: Delayed Interaction Between a Hydrogen Poor Core-collapse Supernova and a Nearby Circumstellar Shell
- The impact of mass-loss on the evolution and pre-supernova properties of red supergiants
- SN 2017ein and the Possible First Identification of a Type Ic Supernova Progenitor
- Progenitor constraints on the Type-Ia supernova SN2011fe from pre-explosion Hubble Space Telescope HeII narrow-band observations
- Massive Stars in the Galaxies of the Local Group
- On the Progenitor System of the Type Iax Supernova 2014dt in M61
- Wolf-Rayet stars in M81: Detection and Characterization using GTC/OSIRIS spectra and HST/ACS images
- First survey of Wolf-Rayet star populations over the full extension of nearby galaxies observed with CALIFA
- GalevNB: a conversion from N-BODY simulations to observations
- The First Optical Spectra of Wolf Rayet Stars in M101 Revealed with Gemini/GMOS
- The emission-line regions in the nucleus of NGC 1313 probed with GMOS-IFU: a supergiant/hypergiant candidate and a kinematically cold nucleus
- The detectability of Wolf-Rayet Stars in M33-ike spirals up to 30 Mpc
- Quantifying Systematic Age Discrepancies in Very Young Star Clusters