Isocyanic acid (HNCO) in the Hot Molecular Core G331.512-0.103: Observations and Chemical Modelling
arXiv:2104.10605 · doi:10.1093/mnras/stab1163
Abstract
Isocyanic acid (HNCO) is a simple molecule with a potential to form prebiotic and complex organic species. Using a spectral survey collected with the Atacama Pathfinder EXperiment (APEX), in this work we report the detection of 42 transitions of HNCO in the hot molecular core/outflow G331.512-0.103 (hereafter G331). The spectral lines were observed in the frequency interval 160 - 355 GHz. By means of Local Thermodynamic Equilibrium (LTE) analyses, applying the rotational diagram method, we studied the excitation conditions of HNCO. The excitation temperature and column density are estimated to be = 58.8 2.7 K and = (3.7 0.5) 10 cm, considering beam dilution effects. The derived relative abundance is between (3.8 0.5) 10 and (1.4 0.2) 10. In comparison with other hot molecular cores, our column densities and abundances are in agreement. An update of the internal partition functions of the four CHNO isomers: HNCO; cyanic acid, HOCN; fulminic acid, HCNO; and isofulminic acid, HONC is provided. We also used the astrochemical code Nautilus to model and discuss HNCO abundances. The simulations could reproduce the abundances with a simple zero-dimensional model at a temperature of 60 K and for a chemical age of 10 years, which is larger than the estimated dynamical age for G331. This result could suggest the need for a more robust model and even the revision of chemical reactions associated with HNCO.
17 pages, 8 figures , Accepted in MNRAS
References in corpus (21)
- A Unified Representation of Gas-Phase Element Depletions in the Interstellar Medium
- The 2014 KIDA network for interstellar chemistry
- Testing grain-surface chemistry in massive hot-core regions
- Polycylcic Aromatic Hydrocarbons (PAH's) in dense cloud chemistry
- A 2 mm spectral line survey of the starburst galaxy NGC 253
- Modeling Complex Organic Molecules in dense regions: Eley-Rideal and complex induced reaction
- The effect of uncertainties on chemical models of dark clouds
- Shedding light on the formation of the pre-biotic molecule formamide with ASAI
- Discovery of Fulminic Acid, HCNO, in Dark Clouds
- Tracing shocks and photodissociation in the Galactic center region
- Molecules with a peptide link in protostellar shocks: a comprehensive study of L1157
- Interstellar formamide (NHCHO), a key prebiotic precursor
- Low Temperature Surface Formation of NH3 and HNCO: hydrogenation of nitrogen atoms in CO-rich interstellar ice analogues
- SEPIA - a new single pixel receiver at the APEX Telescope
- Grain Surface Reactions in Molecular Clouds: The Effect of Cosmic Rays and Quantum Tunneling
- A new look at sulphur chemistry in hot cores and corinos
- 13C-methyl formate: observations of a sample of high mass star-forming regions including Orion-KL and spectroscopic characterization
- New N-bearing species towards OH231.8+4.2: HNCO, HNCS, HCN and NO
- Impact of nonconvergence and various approximations of the partition function on the molecular column densities in the interstellar medium
- ALMA Observations of the massive molecular outflow G331.512-0.103 II: physical properties, kinematics, and geometry modeling
- Extended HNCO, SiO, and HCN emission in 43 southern star-forming regions