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H2CS in outflows of the massive star-forming core DR21(OH)
Journal article   Open access   Peer reviewed

H2CS in outflows of the massive star-forming core DR21(OH)

Y.C. Minh, S.-Y. Liu, H.-R. Chen and Y.-N. Su
Astrophysical Journal Letters, Vol.737(1), L25
10/08/2011

Abstract

ISM: abundances ISM: clouds ISM: individual objects (DR21(OH)) ISM: molecules stars: formation
For the first time, using the Submillimeter Array, H 2 CS emission was observed to show a typical bipolar outflow morphology toward DR21(OH). The emission consisted of a strong concentration toward a hot molecular core (MM1a) and a symmetrically extended feature aligned roughly in the north-south direction. H 2 CS is one of the hot core species, and its extended emission is expected to result from the interaction between the outflow of MM1a and the dense ambient gas. We derive H 2 CS column densities of ∼3 × 10 15 cm -2 and ∼1 × 10 15 cm -2 toward MM1a and the centers of the extended emission, respectively. Its fractional abundance, f (H 2 CS) ∼10 -9 relative to the total H 2 abundance, is comparable to those in other star-forming regions, suggesting that H 2 CS may be present in a region closer to the center than previously thought. Our results suggest that the observed H 2 CS emission arises via direct evaporation or sputtering of the solid H 2 CS on the grain surface, and H 2 CS may be one of the major sulfur-bearing species residing in the ice grain mantles in a solid form, at least in the case of DR21(OH). © 2011. The American Astronomical Society. All rights reserved.
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https://doi.org/10.1088/2041-8205/737/1/L25View
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