ALMA observations of N83C in the early stage of star formation in the Small Magellanic Cloud
arXiv:1706.04871 · doi:10.3847/1538-4357/aa7a0b
Abstract
We have performed Atacama Large Millimeter/submillimeter Array (ALMA) observations in CO(), CO(), CO(), CO(), CO(), and CS() lines toward the active star-forming region N83C in the Small Magellanic Cloud (SMC), whose metallicity is 1/5 of the Milky Way (MW). The ALMA observations first reveal sub-pc scale molecular structures in CO() and CO() emission. We found strong CO peaks associated with young stellar objects (YSOs) identified by the Space Telescope, and also found that overall molecular gas is distributed along the edge of the neighboring HII region. We derived a gas density of cm in molecular clouds associated with YSOs based on the virial mass estimated from CO() emission. This high gas density is presumably due to the effect of the HII region under the low-metallicity (accordingly small-dust content) environment in the SMC; far-UV radiation from the HII region can easily penetrate and photo-dissociate the outer layer of CO molecules in the molecular clouds, and thus only the innermost parts of the molecular clouds are observed even in CO emission. We obtained the CO-to-H conversion factor of cm (K km s) in N83C based on virial masses and CO luminosities, which is four times larger than that in the MW, 2 cm (K km s). We also discuss the difference in the nature between two high-mass YSOs, each of which is associated with a molecular clump with a mass of about a few .
12 pages, 4 figures, 2 tables, accepted for publication in ApJ
References in corpus (5)
- Revealing the physical properties of molecular gas in Orion with a large scale survey in J=2-1 lines of 12CO, 13CO and C18O
- Optically visible post-AGB/RGB stars and young stellar objects in the Small Magellanic Cloud: candidate selection, spectral energy distributions and spectroscopic examination
- High abundance ratio of CO to CO toward photon-dominated regions in the Orion-A giant molecular cloud
- Physical Structures of the Type Ia Supernova Remnant N103B
- The 1.1 mm Continuum Survey of the Small Magellanic Cloud: Physical Properties and Evolution of the Dust-selected Clouds