Detection of the cyanomidyl radical (HNCN): a new interstellar species with the NCN backbone

Author:

Rivilla V M12ORCID,Jiménez-Serra I1,García de la Concepción J1,Martín-Pintado J1,Colzi L1,Rodríguez-Almeida L F1,Tercero B3,Rico-Villas F1,Zeng S4ORCID,Martín S56ORCID,Requena-Torres M A78,de Vicente P3

Affiliation:

1. Centro de Astrobiología (CSIC-INTA), Ctra. de Ajalvir Km. 4, Torrejón de Ardoz, E-28850 Madrid, Spain

2. INAF-Osservatorio Astrofisico di Arcetri, Largo Enrico Fermi 5, I-50125 Florence, Italy

3. Observatorio Astronómico Nacional (OAN-IGN), Calle Alfonso XII, 3, E-28014 Madrid, Spain

4. RIKEN, 2-1 Hirosawa, Wako, Saitama 351-0198, Japan

5. European Southern Observatory, ALMA Department of Science, Alonso de Córdova 3107, Vitacura 763 0355, Santiago, Chile

6. Joint ALMA Observatory, Department of Science Operations, Alonso de Córdova 3107, Vitacura 763 0355, Santiago, Chile

7. Department of Astronomy, University of Maryland, College Park, ND 20742-2421, USA

8. Department of Physics, Astronomy and Geosciences, Towson University, Towson, MD 21252, USA

Abstract

ABSTRACT We report here the first detection in the interstellar medium of the cyanomidyl radical (HNCN). Using the Yebes 40m and the IRAM 30m telescopes, we have targeted the doublets of the N = 2–1, 4–3, 5–4, 6–5, and 7–6 transitions of HNCN towards the molecular cloud G+0.693-0.027. We have detected three unblended lines of HNCN, these are the N = 6–5 doublet and one line of the N = 4–3 transition. Additionally, we present one line of the N = 5–4 transition partially blended with emission from other species. The local thermodynamic equilibrium best fit to the data gives a molecular abundance of (0.91 ± 0.05) × 10−10 with respect to H2. The relatively low abundance of this species in G+0.693-0.027 and its high reactivity suggest that HNCN is possibly produced by gas-phase chemistry. Our work shows that this highly reactive molecule is present in interstellar space, and thus it represents a plausible precursor of larger prebiotic molecules with the nitrogen–carbon–nitrogen backbone such as cyanamide (NH2CN), carbodiimide (HNCNH), and formamidine (NH2CHNH).

Funder

Comunidad de Madrid

European Research Council

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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