English

Detection of CH$_3$C$_3$N in Titan's Atmosphere

Earth and Planetary Astrophysics 2020-11-11 v1

Abstract

Titan harbors a dense, organic-rich atmosphere primarily composed of N2_2 and CH4_4, with lesser amounts of hydrocarbons and nitrogen-bearing species. As a result of high sensitivity observations by the Atacama Large Millimeter/submillimeter Array (ALMA) in Band 6 (\sim230-272 GHz), we obtained the first spectroscopic detection of CH3_3C3_3N (methylcyanoacetylene or cyanopropyne) in Titan's atmosphere through the observation of seven transitions in the J=6463J = 64\rightarrow63 and J=6261J = 62\rightarrow61 rotational bands. The presence of CH3_3C3_3N on Titan was suggested by the Cassini Ion and Neutral Mass Spectrometer detection of its protonated form: C4_4H3_3NH+^+, but the atmospheric abundance of the associated (deprotonated) neutral product is not well constrained due to the lack of appropriate laboratory reaction data. Here, we derive the column density of CH3_3C3_3N to be (3.8-5.7)×1012\times10^{12} cm2^{-2} based on radiative transfer models sensitive to altitudes above 400 km Titan's middle atmosphere. When compared with laboratory and photochemical model results, the detection of methylcyanoacetylene provides important constraints for the determination of the associated production pathways (such as those involving CN, CCN, and hydrocarbons), and reaction rate coefficients. These results also further demonstrate the importance of ALMA and (sub)millimeter spectroscopy for future investigations of Titan's organic inventory and atmospheric chemistry, as CH3_3C3_3N marks the heaviest polar molecule detected spectroscopically in Titan's atmosphere to date.

Keywords

Cite

@article{arxiv.2010.08654,
  title  = {Detection of CH$_3$C$_3$N in Titan's Atmosphere},
  author = {A. E. Thelen and M. A. Cordiner and C. A. Nixon and V. Vuitton and Z. Kisiel and S. B. Charnley and M. Y. Palmer and N. A. Teanby and P. G. J. Irwin},
  journal= {arXiv preprint arXiv:2010.08654},
  year   = {2020}
}

Comments

17 pages, 6 figures, 2 tables. Accepted in ApJ Letters