English

Interstellar Detection of Methyl Isocyanate CH$_3$NCO in Sgr B2(N): A Link from Molecular Clouds to Comets

Solar and Stellar Astrophysics 2015-10-14 v1

Abstract

A new interstellar molecule, CH3_3NCO (methyl isocyanate), has been detected using the 12 m telescope of the Arizona Radio Observatory (ARO). CH3_3NCO was identified in spectra covering 48 GHz (68-116 GHz) in the 3 mm segment of a broadband survey of Sgr B2(N). Thirty very favorable rotational lines (Ka_a = 0 and Ka_a = 1 only; Eu_u < 60 K) originating in five consecutive transitions (J = 8 \rightarrow 7, 9 \rightarrow 8, 10 \rightarrow 9, 11 \rightarrow 10, and 12 \rightarrow 11) in both the A and E internal rotation species are present in this frequency range. Emission was observed at all of the predicted frequencies, with seventeen lines appearing as distinct, uncontaminated spectral features, clearly showing the classic a-type, asymmetric top pattern, with TR_R* ~ 20-70 mK. The CH3_3NCO spectra also appear to exhibit two velocities components near VLSR_{LSR} ~ 62 and 73 km s1^{-1}, both with Δ\DeltaV1/2_{1/2} ~ 10 km s1^{-1} - typical of molecules such as CH2_2CHCN, HNCO, and HCOOCH3_3 in Sgr B2(N). The column density of CH3_3NCO in Sgr B2(N) was determined to be Ntot_{tot} ~ 2.3 x 1013^{13} cm2^{-2} and 1.5 x 1013^{13} cm2^{-2} for the 62 and 73 km s1^{-1} components, corresponding to fractional abundances, relative to H2_2, of f ~ 7.6 x 1012^{-12} and 5.0 x 1012^{-12}, respectively. CH3_3NCO was recently detected in volatized material from comet 67P/Churyumov-Gerasimenko by Rosetta's Philae lander, with an abundance ~1.3% of water; in Sgr B2(N), CH3_3NCO is roughly ~0.04% of the H2_2O abundance.

Keywords

Cite

@article{arxiv.1509.09305,
  title  = {Interstellar Detection of Methyl Isocyanate CH$_3$NCO in Sgr B2(N): A Link from Molecular Clouds to Comets},
  author = {DeWayne T. Halfen and Vadim V. Ilyushin and Lucy M. Ziurys},
  journal= {arXiv preprint arXiv:1509.09305},
  year   = {2015}
}

Comments

14 pages, 3 tables, 3 figures, 1 machine-readable table in ApJ (Letters) Oct. 2, 2015 issue