Aromatic rings in the Central Molecular Zone: Benzonitrile

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Main Authors: Rivilla, V. M., Andrés, D. San, Sanz-Novo, M., Colzi, L., Jiménez-Serra, I., López-Gallifa, A., Martínez-Henares, A., Megías, A., Martín, S., Tercero, B., Zeng, S., Loreau, J., Khalifa, M. Ben, Requena-Torres, M. A., de Vicente, P.
Format: Preprint
Published: 2026
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author Rivilla, V. M.
Andrés, D. San
Sanz-Novo, M.
Colzi, L.
Jiménez-Serra, I.
López-Gallifa, A.
Martínez-Henares, A.
Megías, A.
Martín, S.
Tercero, B.
Zeng, S.
Loreau, J.
Khalifa, M. Ben
Requena-Torres, M. A.
de Vicente, P.
author_facet Rivilla, V. M.
Andrés, D. San
Sanz-Novo, M.
Colzi, L.
Jiménez-Serra, I.
López-Gallifa, A.
Martínez-Henares, A.
Megías, A.
Martín, S.
Tercero, B.
Zeng, S.
Loreau, J.
Khalifa, M. Ben
Requena-Torres, M. A.
de Vicente, P.
contents In recent years, several aromatic molecules (benzene-based rings) have been detected in the cold molecular cloud TMC-1, with its CN-derivative, benzonitrile (c-C$_6$H$_5$CN), also identified in other nearby cold sources. However, observed abundances differ significantly from chemical model predictions, indicating an incomplete understanding of its chemistry and motivating searches in distinct environments. We report new detections of benzonitrile in two warmer molecular clouds of the Central Molecular Zone (CMZ): G+0.693-0.027 and G+0.633-0.0604. Using Yebes 40m ultra-deep surveys in the 31--50 GHz range, we performed LTE and non-LTE analyses to derive the physical parameters of the emission. We obtain column densities of $N$=(7.4$\pm$0.5)$\times10^{12}$ and (2.60$\pm$0.13)$\times10^{12}$ cm$^{-2}$, corresponding to abundances relative to H$_2$ of (6$\pm$1)$\times10^{-11}$ and (4.3$\pm$0.9)$\times10^{-11}$, consistent with values in cold Galactic clouds. The HC$_7$N/benzonitrile ratio is lower (2.15-2.4) than in colder sources (4.5-30), suggesting environmental effects and a relative enhancement of aromatic chemistry in the CMZ. These results confirm that benzonitrile is widespread and can survive in harsher environments (e.g., high temperatures, shocks, enhanced cosmic-ray ionization) than those in Galactic cold clouds. This suggests that aromatics are stable and abundant species that can significantly contribute to the total budget of interstellar carbon in molecular clouds. A top-down formation scenario, involving fragmentation of larger carbonaceous species, is consistent with the nearly constant abundances observed with molecular size.
format Preprint
id arxiv_https___arxiv_org_abs_2604_24510
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Aromatic rings in the Central Molecular Zone: Benzonitrile
Rivilla, V. M.
Andrés, D. San
Sanz-Novo, M.
Colzi, L.
Jiménez-Serra, I.
López-Gallifa, A.
Martínez-Henares, A.
Megías, A.
Martín, S.
Tercero, B.
Zeng, S.
Loreau, J.
Khalifa, M. Ben
Requena-Torres, M. A.
de Vicente, P.
Astrophysics of Galaxies
In recent years, several aromatic molecules (benzene-based rings) have been detected in the cold molecular cloud TMC-1, with its CN-derivative, benzonitrile (c-C$_6$H$_5$CN), also identified in other nearby cold sources. However, observed abundances differ significantly from chemical model predictions, indicating an incomplete understanding of its chemistry and motivating searches in distinct environments. We report new detections of benzonitrile in two warmer molecular clouds of the Central Molecular Zone (CMZ): G+0.693-0.027 and G+0.633-0.0604. Using Yebes 40m ultra-deep surveys in the 31--50 GHz range, we performed LTE and non-LTE analyses to derive the physical parameters of the emission. We obtain column densities of $N$=(7.4$\pm$0.5)$\times10^{12}$ and (2.60$\pm$0.13)$\times10^{12}$ cm$^{-2}$, corresponding to abundances relative to H$_2$ of (6$\pm$1)$\times10^{-11}$ and (4.3$\pm$0.9)$\times10^{-11}$, consistent with values in cold Galactic clouds. The HC$_7$N/benzonitrile ratio is lower (2.15-2.4) than in colder sources (4.5-30), suggesting environmental effects and a relative enhancement of aromatic chemistry in the CMZ. These results confirm that benzonitrile is widespread and can survive in harsher environments (e.g., high temperatures, shocks, enhanced cosmic-ray ionization) than those in Galactic cold clouds. This suggests that aromatics are stable and abundant species that can significantly contribute to the total budget of interstellar carbon in molecular clouds. A top-down formation scenario, involving fragmentation of larger carbonaceous species, is consistent with the nearly constant abundances observed with molecular size.
title Aromatic rings in the Central Molecular Zone: Benzonitrile
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2604.24510