Collisional excitation of methyl (iso)cyanide by He atoms: rate coefficients and isomerism effects
arXiv:2309.12045 · doi:10.1093/mnras/stad1508
Abstract
Among all closed-shell species observed in molecular clouds, molecules with C symmetry play a crucial role, as their rotational spectroscopy allows them to behave as a gas thermometer. In the interstellar medium, methyl cyanide (CHCN) is the second most abundant of those (after ammonia, NH). Its isomer, methyl isocyanide (CHNC) is less abundant but has been detected in many astrophysical sources. In order to assess their absolute and relative abundances, it is essential to understand their collisional excitation properties. This paper reports the calculation of rate coefficients for rotational excitation of CHCN and CHNC molecules with He atoms, from low (5 K) to moderate (100 K) temperatures. We include the first 74 and 66 rotational states of both and symmetries of CHCN and CHNC, respectively. A propensity for transitions is observed in the case of CHCN-He collisions, whereas in the case of CHNC-He a propensity for is observed for transitions involving low values of and at low temperatures, while a propensity for is observed for higher values of and at high temperatures. A comparison of rate coefficients shows differences up to a factor of 3, depending on temperature and on the / symmetries for dominant transitions. This confirms the importance of having specific collisional data for each isomer. We also examined the effect of these new rates on the CHCN and CHNC excitation in molecular clouds by performing radiative transfer calculations of the excitation and brightness temperatures for several detected lines.
9p
References in corpus (6)
- 2021 Census of Interstellar, Circumstellar, Extragalactic, Protoplanetary Disk, and Exoplanetary Molecules
- The cometary composition of a protoplanetary disk as revealed by complex cyanides
- Detection of circumstellar CH2CHCN, CH2CN, CH3CCH and H2CS
- First detection of the pre-biotic molecule glycolonitrile (HOCH2CN) in the interstellar medium
- Laboratory Characterization and Astrophysical Detection of Vibrationally Excited States of Vinyl Cyanide in Orion-KL
- Interaction of CHCN and CHNC with He : potential energy surfaces and low-energy scattering
Cited by in corpus (5)
- Rotational excitation of interstellar benzonitrile by helium atoms
- Collisional excitation of propyne (CHCCH) by He atoms
- Collisional Excitation in Space: Recent Advances and Future Challenges in the JWST Era
- PRODIGE - envelope to disk with NOEMA: VII. (Complex) organic molecules in the NGC1333 IRAS4B1 outflow: A new laboratory for shock chemistry
- Spatial distribution of organics in the Horsehead nebula: Signposts of chemistry driven by atomic carbon