G331.512-0.103: An Interstellar Laboratory for Molecular Synthesis I. The Ortho-to-para Ratios for CHOH and CHCN
arXiv:1801.06019 · doi:10.3847/1538-4357/aaa1ec
Abstract
Spectral line surveys reveal rich molecular reservoirs in G331.512-0.103, a compact radio source in the center of an energetic molecular outflow. In this first work, we analyse the physical conditions of the source by means of CHOH and CHCN. The observations were performed with the APEX telescope. Six different system configurations were defined to cover most of the band within (292-356) GHz; as a consequence we detected a forest of lines towards the central core. A total of 70 lines of -CHOH and -CHCN were analysed, including torsionally excited transitions of CHOH (=1). In a search for all the isotopologues, we identified transitions of CHOH. The physical conditions were derived considering collisional and radiative processes. We found common temperatures for each and symmetry of CHOH and CHCN; the derived column densities indicate an equilibrated ratio for both tracers. The results reveal that CHCN and CHOH trace a hot and cold component with 141 K and 74 K, respectively. In agreement with previous ALMA observations, the models show that the emission region is compact ( 5.5 arcsec) with gas density (H)=(0.7-1) 10 cm. The CHOH/CHCN abundance ratio and the evidences for pre-biotic and complex organic molecules suggest a rich and active chemistry towards G331.512-0.103.
15 pages, 7 figures, 7 tables. Accepted for publication in The Astrophysical Journal
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Cited by in corpus (6)
- CH3-Terminated Carbon Chains in the GOTHAM Survey of TMC-1: Evidence of Interstellar CH3C7N
- Isocyanic acid (HNCO) in the Hot Molecular Core G331.512-0.103: Observations and Chemical Modelling
- Cyanoacetylene in the outflow/hot molecular core G331.512-0.103
- The warm-up phase in massive star-forming cores around RCW 120
- A spectral survey of CH3CCH in the Hot Molecular Core G331.512-0.103
- Observations and chemical modeling of the isotopologues of formaldehyde and the cations of formyl and protonated formaldehyde in the hot molecular core G331.512-0.103