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Related papers: Oxygen isotopic ratios in intermediate-mass red gi…

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High-resolution infrared spectra (R=50,000) have been obtained for twelve red-giant members of the LMC with the Gemini South 8.3-meter telescope plus Phoenix spectrometer. Quantitative chemical abundances of carbon-12, carbon-13,…

The elemental abundances of symbiotic giants are essential to address the role of chemical composition in the evolution of symbiotic binaries, to map their parent population, and to trace their mass transfer history. However, the number of…

Solar and Stellar Astrophysics · Physics 2015-11-16 Cezary Galan , Joanna Mikolajewska , Kenneth H. Hinkle , Richard R. Joyce

The abundance of oxygen was determined for selected very metal-poor G-K stars (six giants and one turn-off star) based on the high S/N and high-resolution spectra observed with Keck HIRES in the red through near-IR region comprising the…

Astrophysics · Physics 2007-05-23 Y. Takeda , M. Takada-Hidai , S. Sato , W. L. W. Sargent , L. Lu , T. A. Barlow , J. Jugaku

C-fractionation has been studied from a theoretical point of view with different models of time-dependent chemistry, including both isotope-selective photodissociation and low-temperature isotopic exchange reactions. Recent chemical models…

Astrophysics of Galaxies · Physics 2020-10-05 L. Colzi , O. Sipilä , E. Roueff , P. Caselli , F. Fontani

Our main aim is to determine carbon-to-nitrogen and carbon isotope ratios for evolved giants in the open clusters NGC 2324, NGC 2477, and NGC 3960, which have turn-off masses of about 2 Msun, and to compare them with predictions of…

Astrophysics of Galaxies · Physics 2017-02-22 Grazina Tautvaisiene , Arnas Drazdauskas , Angela Bragaglia , Sofia Randich , Renata Zenoviene

High-resolution H-band spectra of five bright field K, M, and MS giants, obtained from the archives of the Kitt Peak National Observatory (KPNO) Fourier Transform Spectrometer (FTS), are analyzed to determine chemical abundances of 16…

Recent observations by JWST have revealed supersolar $^{14}$N abundances in galaxies at very high redshift. On the other hand, these galaxies show subsolar metallicity. The observed N/O ratios are difficult to reproduce in the framework of…

Astrophysics of Galaxies · Physics 2025-05-14 F. Rizzuti , F. Matteucci , P. Molaro , G. Cescutti , R. Maiolino

Aims. Our main aim with this work was to enlarge the pool of open clusters with determined carbon, nitrogen, and oxygen abundances in evolved giants to further advance chemical clocks in stellar age determinations. Methods. High-resolution…

The Nitrogen-to-Oxygen (N/O) abundance ratio is an important diagnostic of galaxy evolution since the ratio is closely tied to the growth of metallicity and the star formation history in galaxies. Estimates for the N/O ratio are…

Determining molecular abundance ratios is important not only for the study of the Galactic chemistry but also because they are useful to estimate physical parameters in a large variety of interstellar medium environments. The CO is one of…

Astrophysics of Galaxies · Physics 2018-05-16 M. B. Areal , S. Paron , Peña M. Celis , M. Ortega

We determine the carbon isotopic ratios in the atmospheres of some evolved stars in both globular clusters and the disk of our Galaxy. Analysis of 12CO and 13CO bands at 2.3 micron was carried out using fits to observed spectra of red…

Astrophysics · Physics 2009-11-11 Yakiv V. Pavlenko

The study of open-cluster chemical abundances provides insights on stellar nucleosynthesis processes and on Galactic chemo-dynamical evolution. In this paper we present an extended abundance analysis of 10 species (Fe, Ni, Cr, V, Sc, Si,…

The abundance ratio N/O is a useful tool to study the interplay of galactic processes, e.g. star formation efficiency, time-scale of infall and outflow loading factor We aim to trace log(N/O) versus [Fe/H] in the Milky Way and to compare it…

Using the IRAM 30-m telescope, CN and CO isotopologues have been measured toward the central regions of the nearby starburst galaxy NGC253 and the prototypical ultraluminous infrared galaxy Mrk231. In NGC253, the 12C/13C ratio is 40+-10.…

We present a comprehensive analysis of the nitrogen-to-oxygen (N/O) abundance ratio in a sample of ~ 660 star-forming galaxies at redshift z ~ 1-6, with a median redshift of z = 3.0, using deep JWST/NIRSpec spectroscopy. Leveraging…

The 18O/17O ratio of the Solar System is 5.2 while that of the interstellar medium (ISM) and young stellar objects is ~4. This difference cannot be explained by pollution of the Sun's natal molecular cloud by 18O-rich supernova ejecta…

Solar and Stellar Astrophysics · Physics 2014-11-20 Eric Gaidos , Alexander N. Krot , Gary R. Huss

Aims: We carried out a detailed investigation of Lithium and CNO abundances, including carbon isotope ratios, in RS CVn stars to assess the role of magnetic activity in the mixing of stellar atmospheres. Methods: We obtained high-resolution…

Solar and Stellar Astrophysics · Physics 2025-10-23 B. Bale , G. Tautvaisiene , R. Minkeviciute , A. Drazdauskas , S. Mikolaitis , E. Stonkute , M. Ambrosch

We study the Oxygen and Nitrogen abundances in the interstellar medium of high-redshift galaxies. We use high resolution and high signal-to-noise ratio spectra of Damped Lyman-alpha (DLA) systems detected along the line-of-sight to quasars…

Astrophysics · Physics 2009-11-13 Patrick Petitjean , Cedric Ledoux , R. Srianand

We have used high resolution observations obtained at the AAT with UHRF (R ~ 100,000) and at Gemini-S with b-HROS (R ~ 150,000) to determine magnesium isotope ratios for seven omega Centauri red giants that cover a range in iron abundance…

Astrophysics of Galaxies · Physics 2015-06-15 G S Da Costa , John E Norris , David Yong

The nitrogen isotope ratio 14N/15N is a powerful tool to trace Galactic stellar nucleosynthesis and constraining Galactic chemical evolution. Previous observations have found lower 14N/15N ratios in the Galactic center and higher values in…

Astrophysics of Galaxies · Physics 2024-06-17 J. L. Chen , J. S. Zhang , C. Henkel , Y. T. Yan , H. Z. Yu , Y. X. Wang , Y. P. Zou , J. Y. Zhao , X. Y. Wang