Logo image
Chemical structure of the massive protobinary-forming hot core, W3(H 2O)
Conference paper   Open access

Chemical structure of the massive protobinary-forming hot core, W3(H 2O)

Y.C. Minh and H.-R. Chen
Proceedings of the International Astronomical Union, Vol.2(S237), p.448
08/2006

Abstract

Astrochemistry ISM: abundances ISM: clouds ISM: individual (W3(H2O)) ISM: molecules Molecular processes Astronomy and Astrophysics
The hot molecular core, W3(H2O), contains a massive protobinary system that is cocooned by dense gas (n(H2) ~ 10 7 cm 3 ), with about 1 arcsec (~ 2000 AU) separation of the binary system. We investigate chemical properties of the gas components around this binary system using the mm-wave transitions of complex molecules, CH3CN, SiO, HNCO, and CH3CH2CN, observed with the BIMA array. The two protostellar objects, A and C in W3(H2O), can be distinguished using chemical properties, suggesting that the source A may be younger than the source C within the time scale of less than 10 4 years. The hot core around the source C, traced by CH3CH2CN and the K=6 component of CH3CN, seems to have more time for chemical evolution than the source A. The SiO emission in this region suggests that there was an influence from the outside of the W3(H2O) and W3(OH) hot cores. The nitrogen chemistry may be more active in the later stage than the oxygen chemistry, but the chemical evolution of the protostellar envelopes may not be monotonic as previously suggested. © 2007 International Astronomical Union.
url
https://doi.org/10.1017/S1743921307002360View
Published (Version of record) Open

Related links

Metrics

1 Record Views

Details

Logo image