Study of star formation in RCW 106 using far infrared observations
arXiv:astro-ph/0104350 · doi:10.1046/j.1365-8711.2001.04596.x
Abstract
High resolution far-infrared observations of a large area of the star forming complex RCW 106 obtained using the TIFR 1-metre balloon-borne telescope are presented. Intensity maps have been obtained simultaneously in two bands centred around 150 & 210 micron. Intensity maps have also been obtained at the 4 IRAS bands using HIRES processed IRAS data. From the 150 & 210 micron maps, reliable maps of dust temperature and optical depth have been generated. The star formation in this complex has occured in five linear subclumps. Using the map at 210 micron, which has a spatial resolution superior to that of the IRAS at 100 micron, 23 sources have been identified. The SED and luminosity of these sources have been determined using the associations wit hthe IRAS maps. Luminosity distribution of these sources has been obtained. Assuming these embedded sources to be ZAMS stars and using the mass-luminosity relation, the power law slope of the Initial Mass Function is found to be -1.73+-0.5. This index for this very young complex is about the same as that for more evolved complexes and clusters. Radiation transfer calculations in spherical geometry have been undertaken to fit the SEDs of 13 sources with fluxes in both the TIFR and IRAS bands. From this, the r^-2 density distribution in the envelopes is ruled out. Finally, a correlation is seen between the luminosity of embedded sources and the computed dust masses of the envelopes.
Accepted for publication in MNRAS (21 pages, 8 figures & 3 tables)
References in corpus (4)
- Massive Stars: Their Environment and Formation
- Far Infrared Observations of the Galactic Star Forming Regions associated with IRAS 00338+6312 & RAFGL 5111
- Far Infrared Study of IRAS 00494+5617 & IRAS 05327-0457
- Efficient absolute aspect determination of a balloon borne far infrared telescope using a solid state optical photometer
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- High-resolution APEX/LAsMA CO and CO (3-2) observation of the G333 giant molecular cloud complex : I. Evidence for gravitational acceleration in hub-filament systems
- The Three-mm Ultimate Mopra Milky Way Survey. II. Cloud and Star Formation Near the Filamentary Ministarburst RCW 106
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- A Spitzer Space Telescope survey of massive young stellar objects in the G333.2-0.4 giant molecular cloud
- Discovery of a young massive stellar cluster associated with IRAS source 16177-5018
- Infall, outflow, and turbulence in massive star-forming cores in the G333 giant molecular cloud
- Infrared study of the southern Galactic star forming regions associated with IRAS 10049-5657 and IRAS 10031-5632