English

The C$^{14}$N/C$^{15}$N Ratio in Diffuse Molecular Clouds

Astrophysics of Galaxies 2018-06-07 v1

Abstract

We report the first detection of C15^{15}N in diffuse molecular gas from a detailed examination of CN absorption lines in archival VLT/UVES spectra of stars probing local diffuse clouds. Absorption from the C15^{15}N isotopologue is confidently detected (at 4σ\gtrsim4\sigma) in three out of the four directions studied and appears as a very weak feature between the main 12^{12}CN and 13^{13}CN absorption components. Column densities for each CN isotopologue are determined through profile fitting, after accounting for weak additional line-of-sight components of 12^{12}CN, which are seen in the absorption profiles of CH and CH+^+ as well. The weighted mean value of C14^{14}N/C15^{15}N for the three sight lines with detections of C15^{15}N is 274±18274\pm18. Since the diffuse molecular clouds toward our target stars have relatively high gas kinetic temperatures and relatively low visual extinctions, their C14^{14}N/C15^{15}N ratios should not be affected by chemical fractionation. The mean C14^{14}N/C15^{15}N ratio that we obtain should therefore be representative of the ambient 14^{14}N/15^{15}N ratio in the local interstellar medium. Indeed, our mean value agrees well with that derived from millimeter-wave observations of CN, HCN, and HNC in local molecular clouds.

Keywords

Cite

@article{arxiv.1503.08221,
  title  = {The C$^{14}$N/C$^{15}$N Ratio in Diffuse Molecular Clouds},
  author = {Adam M. Ritchey and Steven R. Federman and David L. Lambert},
  journal= {arXiv preprint arXiv:1503.08221},
  year   = {2018}
}

Comments

13 pages, 3 figures, accepted for publication in ApJ Letters

R2 v1 2026-06-22T09:04:14.030Z