English

The detection of extragalactic $^{15}$N: Consequences for nitrogen nucleosynthesis and chemical evolution

Astrophysics 2009-10-31 v1

Abstract

Detections of extragalactic 15^{15}N are reported from observations of the rare hydrogen cyanide isotope HC15^{15}N toward the Large Magellanic Cloud (LMC) and the core of the (post-) starburst galaxy NGC 4945. Accounting for optical depth effects, the LMC data from the massive star-forming region N113 infer a 14N/15^{14}N/^{15}N ratio of 111 ±\pm 17, about twice the 12C/13^{12}C/^{13}C value. For the LMC star-forming region N159HW and for the central region of NGC 4945, 14N/15^{14}N/^{15}N ratios are also \approx 100. The 14N/15^{14}N/^{15}N ratios are smaller than all interstellar nitrogen isotope ratios measured in the disk and center of the Milky Way, strongly supporting the idea that 15^{15}N is predominantly of `primary' nature, with massive stars being its dominant source. Although this appears to be in contradiction with standard stellar evolution and nucleosynthesis calculations, it supports recent findings of abundant 15^{15}N production due to rotationally induced mixing of protons into the helium-burning shells of massive stars.

Keywords

Cite

@article{arxiv.astro-ph/9812375,
  title  = {The detection of extragalactic $^{15}$N: Consequences for nitrogen nucleosynthesis and chemical evolution},
  author = {Yi-nan Chin and Christian Henkel and Norbert Langer and Rainer Mauersberger},
  journal= {arXiv preprint arXiv:astro-ph/9812375},
  year   = {2009}
}

Comments

15 pages including one postscript figure, accepted for publication by ApJ Letter, further comments: please contact Yi-nan Chin