H2CN/H2NC abundance ratio: a new potential temperature tracer for the interstellar medium
Abstract
The radical is the high-energy metastable isomer of radical, which has been recently detected for the first time in the interstellar medium towards a handful of cold galactic sources, besides a warm galaxy in front of the PKS 1830-211 quasar. These detections have shown that the / isomeric ratio, likewise the HCN/HNC ratio, might increase with the kinetic temperature (), but the shortage of them in warm sources still prevents us to confirm this hypothesis and shed light about their chemistry. In this work, we present the first detection of and towards a warm galactic source, the G+0.693-0.027 molecular cloud (with ), using IRAM 30m observations. We have detected multiple hyperfine components of the and transitions. We derived molecular abundances with respect to of (6.81.3) for and of (3.10.7) for , and a / abundance ratio of 2.20.5. These detections confirm that the / ratio is 2 for sources with , larger than the 1 ratios previously found in colder cores (). This isomeric ratio dependence with temperature cannot be fully explained with the currently proposed gas-phase formation and destruction pathways. Grain surface reactions, including the isomerization, deserve consideration to explain the higher isomeric ratios and abundances observed in warm sources, where the molecules can be desorbed into the gas phase through thermal and/or shock-induced mechanisms.
Keywords
Cite
@article{arxiv.2305.04611,
title = {H2CN/H2NC abundance ratio: a new potential temperature tracer for the interstellar medium},
author = {David San Andrés and Laura Colzi and Víctor M. Rivilla and Juan García de la Concepción and Mattia Melosso and Jesús Martín-Pintado and Izaskun Jiménez-Serra and Shaoshan Zeng and Sergio Martín and Miguel A. Requena-Torres},
journal= {arXiv preprint arXiv:2305.04611},
year = {2023}
}
Comments
12 pages, 5 figures, 3 tables, 2 appendix - Accepted for publication in Monthly Notices of the Royal Astronomical Society