A pipeline analysis of 778 SMC OB stars yields a large homogeneous catalog and shows that binary stars rotate faster (median 200 km/s) than apparent singles (median 78 km/s).
Very young massive stars in the Small Magellanic Cloud, revealed by HST
1 Pith paper cite this work. Polarity classification is still indexing.
abstract
High spatial resolution imaging with the Hubble Space Telescope allowed us to resolve the compact HII, region N81 lying in the Small Magellanic Cloud (SMC). We show the presence of a tight cluster of newborn massive stars embedded in this nebular ``blob'' of about 10 arcsecs, across. This is the first time the stellar content and internal morphology of such an object is uncovered. These are among the youngest massive stars in this galaxy accessible to direct observations at ultraviolet and optical wavelengths. Six of them are grouped in the core region of about 2 arcsecs diameter, with a pair of the main exciting stars in the very center separated by only 0.27 arcsecs or 0.08 pc. The images display violent phenomena such as stellar winds, shocks, ionization fronts, typical of turbulent starburst regions. Since the SMC is the most metal-poor galaxy observable with very high angular resolution, these observations provide important templates for studying star formation in the very distant metal-poor galaxies which populate the early Universe.
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Binarity at LOw Metallicity (BLOeM): Pipeline-Determined Physical Properties of OB Stars
A pipeline analysis of 778 SMC OB stars yields a large homogeneous catalog and shows that binary stars rotate faster (median 200 km/s) than apparent singles (median 78 km/s).