The IRAM-30m line survey of the Horsehead PDR: III. High abundance of complex (iso-)nitrile molecules in UV-illuminated gas
P. Gratier, J. Pety, V. Guzm\'an, M. Gerin, J. R. Goicoechea, E., Roueff, A. Faure

TL;DR
This study investigates complex nitrile molecules in the Horsehead PDR, revealing high abundances and first millimeter detection of CH3NC, suggesting grain mantle desorption processes enhance their presence in UV-illuminated regions.
Contribution
It provides the first millimeter detection of CH3NC and quantifies the abundance differences of nitriles in UV-illuminated and shielded regions, highlighting the role of grain mantle desorption.
Findings
CH3CN is 30 times more abundant in the PDR than in the dense core.
First clear detection of CH3NC at millimeter wavelengths.
Gas phase chemistry alone cannot explain observed CH3CN levels, implying grain mantle desorption.
Abstract
Complex (iso-)nitrile molecules, such as CH3CN and HC3N, are relatively easily detected in our Galaxy and in other galaxies. We constrain their chemistry through observations of two positions in the Horsehead edge: the photo-dissociation region (PDR) and the dense, cold, and UV-shielded core just behind it. We systematically searched for lines of CH3CN, HC3N, C3N, and some of their isomers in our sensitive unbiased line survey at 3, 2, and 1mm. We derived column densities and abundances through Bayesian analysis using a large velocity gradient radiative transfer model. We report the first clear detection of CH3NC at millimeter wavelength. We detected 17 lines of CH3CN at the PDR and 6 at the dense core position, and we resolved its hyperfine structure for 3 lines. We detected 4 lines of HC3N, and C3N is clearly detected at the PDR position. We computed new electron collisional rate…
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Taxonomy
TopicsAstrophysics and Star Formation Studies · Molecular Spectroscopy and Structure · Spectroscopy and Laser Applications
