Dissociative electron attachment to the HNC$_3$ molecule
Abstract
Dissociative electron attachment (DEA) to the HNC is modeled theoretically using a first-principles approach. In HNC+ collisions, there is a low-energy resonance, which has a repulsive character along the H+NC coordinate and becomes a bound electronic state of the HNC anion near the equilibrium of HNC. The anion state dissociates without a potential barrier towards CN+H. The cross section and the rate coefficient of the process were computed. The obtained rate coefficient at low temperatures is cm/s at 300~K. Such a value of the DEA rate coefficient makes the DEA process by three orders of magnitude more efficient in producing negative molecular ions in the interstellar space than the radiative electron attachment (REA). It is suggested that negative molecular carbon-chain ions, observed in the interstellar medium, are produced by DEA rather than REA.
Keywords
Cite
@article{arxiv.2509.00075,
title = {Dissociative electron attachment to the HNC$_3$ molecule},
author = {Elizabeth Aubin and Jean-Christophe Loison and Mehdi Ayouz and Joshua Forer and Viatcheslav Kokoouline},
journal= {arXiv preprint arXiv:2509.00075},
year = {2025}
}