An improved method to measure 12C/13C and 14N/15N abundance ratios: revisiting CN isotopologues in the Galactic outer disc

Author:

Sun Yichen12ORCID,Zhang Zhi-Yu12ORCID,Wang Junzhi3ORCID,Lin Lingrui12ORCID,Papadopoulos Padelis P45,Romano Donatella6ORCID,Feng Siyi7ORCID,Sun Yan8ORCID,Zhang Bo9,Matteucci Francesca101112ORCID

Affiliation:

1. School of Astronomy and Space Science, Nanjing University , Nanjing 210093 , China

2. Key Laboratory of Modern Astronomy and Astrophysics (Nanjing University), Ministry of Education , Nanjing 210093 , China

3. Guangxi Key Laboratory for Relativistic Astrophysics, Department of Physics, Guangxi University , Nanning 530004 , PR China

4. Department of Physics, Section of Astrophysics, Astronomy and Mechanics, Aristotle University of Thessaloniki , Thessaloniki, GR-54124 , Greece

5. Research Center for Astronomy, Academy of Athens , Soranou Efesiou 4, GR-11527, Athens , Greece

6. INAF , Astrophysics and Space Science Observatory, Via Gobetti 93/3, I-40129 Bologna , Italy

7. Department of Astronomy, Xiamen University , Zengcuo’an West Road, Xiamen, 361005 , China

8. Purple Mountain Observatory and Key Laboratory of Radio Astronomy, Chinese Academy of Sciences , Nanjing 210008 , China

9. Shanghai Astronomical Observatory, Chinese Academy of Sciences , 80 Nandan Road, Shanghai 200030 , China

10. Sezione di Astronomia, Dipartimento di Fisica, Universit‘a di Trieste , Via Tiepolo 11, I-34131 Trieste , Italy

11. INAF , Osservatorio Astronomico di Trieste, Via Tiepolo 11, I-34131 Trieste , Italy

12. INFN , Sezione di Trieste, Via Valerio 2, I-34127 Trieste , Italy

Abstract

ABSTRACT The variations of elemental abundance and their ratios along the Galactocentric radius result from the chemical evolution of the Milky Way discs. The $\rm ^{12}C/^{13}C$ ratio in particular is often used as a proxy to determine other isotopic ratios, such as $\rm ^{16}O/^{18}O$ and $\rm ^{14}N/^{15}N$. Measurements of $\rm ^{12}CN$ and $\rm ^{13}CN$ (or $\rm C^{15}N$) – with their optical depths corrected via their hyper-fine structure lines – have traditionally been exploited to constrain the Galactocentric gradients of the CNO isotopic ratios. Such methods typically make several simplifying assumptions (e.g. a filling factor of unity, the Rayleigh–Jeans approximation, and the neglect of the cosmic microwave background) while adopting a single average gas phase. However, these simplifications introduce significant biases to the measured $\rm ^{12}C/^{13}C$ and $\rm ^{14}N/^{15}N$. We demonstrate that exploiting the optically thin satellite lines of 12CN constitutes a more reliable new method to derive $\rm ^{12}C/^{13}C$ and $\rm ^{14}N/^{15}N$ from CN isotopologues. We apply this satellite-line method to new IRAM 30-m observations of 12CN, 13CN, and C15N N = 1 → 0 towards 15 metal-poor molecular clouds in the Galactic outer disc (Rgc > 12 kpc), supplemented by data from the literature. After updating their Galactocentric distances, we find that $\rm ^{12}C/^{13}C$ and $\rm ^{14}N/^{15}N$ gradients are in good agreement with those derived using independent optically thin molecular tracers, even in regions with the lowest metallicities. We therefore recommend using optically thin tracers for Galactic and extragalactic CNO isotopic measurements, which avoids the biases associated with the traditional method.

Funder

CNRS

National Natural Science Foundation of China

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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