English

Discovery of the interstellar cyanoacetylene radical cation HC$_3$N$^+$

Astrophysics of Galaxies 2024-07-03 v1

Abstract

We report the first identification in space of HC3_3N+^+, the simplest member of the family of cyanopolyyne cations. Three rotational transitions with half-integer quantum numbers from JJ=7/2 to 11/2 have been observed with the Yebes 40m radio telescope and assigned to HC3_3N+^+, which has an inverted 2Π^2\Pi ground electronic state. The three rotational transitions exhibit several hyperfine components due to the magnetic and nuclear quadrupole coupling effects of the H and N nuclei. We confidently assign the characteristic rotational spectrum pattern to HC3_3N+^+ based on the good agreement between the astronomical and theoretical spectroscopic parameters. We derived a column density of (6.0±\pm0.6)×\times1010^{10} cm2^{-2} and a rotational temperature of 4.5±\pm1\,K. The abundance ratio between HC3_3N and HC3_3N+^+ is 3200±\pm320. As found for the larger members of the family of cyanopolyyne cations (HC5_5N+^+ and HC7_7N+^+), HC3_3N+^+ is mainly formed through the reactions of H2_2 and the cation C3_3N+^+ and by the reactions of H+^+ with HC3_3N. In the same manner than other cyanopolyyne cations, HC3_3N+^+ is mostly destroyed through a reaction with H2_2 and a dissociative recombination with electrons.

Keywords

Cite

@article{arxiv.2407.02121,
  title  = {Discovery of the interstellar cyanoacetylene radical cation HC$_3$N$^+$},
  author = {C. Cabezas and M. Agúndez and Y. Endo and B. Tercero and N. Marcelino and P. de Vicente and J. Cernicharo},
  journal= {arXiv preprint arXiv:2407.02121},
  year   = {2024}
}

Comments

Accepted as a Letter to the Editor in Astronomy & Astrophysics on June 28th 2024