A combined IRAM and Herschel/HIFI study of cyano(di)acetylene in Orion KL: tentative detection of DC3N
G. B. Esplugues, J. Cernicharo, S. Viti, J. R. Goicoechea, B. Tercero,, N. Marcelino, Aina Palau, T. A. Bell, E.A. Bergin, N. R. Crockett, S. Wang

TL;DR
This study investigates cyanoacetylene and cyanodiacetylene in Orion KL using IRAM and Herschel data, reporting the first tentative detection of DC3N and analyzing their chemical origins and physical conditions.
Contribution
It provides the first tentative detection of DC3N in Orion KL and combines multi-frequency observations with chemical modeling to explore deuteration processes.
Findings
Tentative detection of DC3N with a DC3N/HC3N ratio of 0.015
High column densities of HC3N make it an excellent tracer of hot, dense gas
Deuterium enrichment suggests gas-phase formation of deuterated HC3N
Abstract
We present a study of cyanoacetylene (HC3N) and cyanodiacetylene (HC5N) in Orion KL, through observations from two line surveys performed with the IRAM 30m telescope and the HIFI instrument on board the Herschel telescope. The frequency ranges covered are 80-280 GHz and 480-1906 GHz. We model the observed lines of HC3N, HC5N, their isotopologues (including DC3N), and vibrational modes, using a non-LTE radiative transfer code. To investigate the chemical origin of HC3N and DC3N in Orion KL, we use a time-dependent chemical model. We detect 40 lines of the ground state of HC3N and 68 lines of its 13C isotopologues. We also detect 297 lines of six vibrational modes of this molecule (nu_7, 2nu_7, 3nu_7, nu_6, nu_5, and nu_6+nu_7) and 35 rotational lines of the ground state of HC5N. We report the first tentative detection of DC3N in a giant molecular cloud with a DC3N/HC3N abundance ratio of…
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