Propargylimine in the laboratory and in space: millimetre-wave spectroscopy and first detection in the ISM
arXiv:2006.08401 · doi:10.1051/0004-6361/202038083
Abstract
Small imines containing up to three carbon atoms are present in the interstellar medium. As alkynyl compounds are abundant in this medium, propargylimine thus represents a promising candidate for a new interstellar detection. The goal of the present work is to perform a comprehensive laboratory investigation of the rotational spectrum of propargylimine in its ground vibrational state in order to obtain a highly precise set of rest-frequencies and to search it in space. The rotational spectra of and geometrical isomers of propargylimine have been recorded in laboratory in the 83-500 GHz frequency interval. The measurements have been performed using a source-modulation millimetre-wave spectrometer equipped with a pyrolysis system for the production of unstable species. High-level ab initio calculations were performed to assist the analysis and to obtain reliable estimates for an extended set of spectroscopic quantities. The improved spectral data allow us to perform a successful search for this new imine in the quiescent G+0.693-0.027 molecular cloud. Eighteen lines of -propargylimine have been detected at level , resulting in a column density estimate of cm. An upper limit was retrieved for the higher-energy isomer, which was not detected in the data. The fractional abundance (w.r.t. H) derived for -propargylimine is . We discuss the possible formation routes by comparing the derived abundance with those measured in the source for possible chemical precursors.
15 pages, 6 figures. Accepted for publication in Astronomy & Astrophysics
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