A comprehensive study of the gas-phase formation network of HC$_5$N: theory, experiments, observations and models
Lisa Giani, Eleonora Bianchi, Martin Fournier, Sidaty Cheikh Sid Ely,, Cecilia Ceccarelli, Marzio Rosi, Jean-Claude Guillemin, Ian R. Sims, Nadia, Balucani

TL;DR
This study combines theory, experiments, observations, and models to elucidate the gas-phase formation pathways of HC$_5$N, a key interstellar molecule, updating reaction data and confirming formation mechanisms in cold star-forming regions.
Contribution
It provides new quantum calculations, experimental rate data, and observational evidence, significantly improving the understanding of HC$_5$N formation in space.
Findings
Updated six reaction rates in astrochemical models.
Detected $^{13}$C isotopologues of HC$_5$N in L1544.
Good model-observation agreement in cold environments.
Abstract
Cyanopolyynes are among the largest and most commonly observed interstellar Complex Organic Molecules in star-forming regions. They are believed to form primarily in the gas-phase, but their formation routes are not well understood. We present a comprehensive study of the gas-phase formation network of cyanobutadiyne, HCN, based on new theoretical calculations, kinetics experiments, astronomical observations, and astrochemical modeling. We performed new quantum mechanics calculations for six neutral-neutral reactions in order to derive reliable rate coefficients and product branching fractions. We also present new CRESU data on the rate coefficients of three of these reactions (CN + CH, CH + HCN, CN + CH) obtained at temperatures as low as 24 K. In practice, six out of nine reactions currently used in astrochemical models have been updated in our reviewed…
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Taxonomy
TopicsQuantum, superfluid, helium dynamics · Spectroscopy and Laser Applications · Spacecraft and Cryogenic Technologies
