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相关论文: Carbon Isotope Ratios in M10 Giants

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The behaviour of the Delta nu =2 CO bands around 2.3 micron was examined by comparing observed and synthetic spectra in stars in globular clusters of different metallicity. Changes in the 12C/13C isotopic ratio and the carbon abundances…

天体物理学 · 物理学 2009-11-10 Yakiv V. Pavlenko , Hugh R. A. Jones , Andrew J. Longmore

Carbon-12 and carbon-13 abundances are measured in eleven red-giant members of the globular cluster Omega Centauri via observations of first-overtone CO bands near 2.3 microns. The mean value for the entire sample is <12C/13C>= 4.3 +/-0.4,…

天体物理学 · 物理学 2009-11-07 Verne V. Smith , Donald M. Terndrup , Nicholas B. Suntzeff

Among stars in Galactic globular clusters the carbon abundance tends to decrease with increasing luminosity on the upper red giant branch, particularly within the lowest metallicity clusters. While such a phenomena is not predicted by…

太阳与恒星天体物理 · 物理学 2019-04-08 Jeffrey M. Gerber , Michael M. Briley , Graeme H. Smith

Despite a rich observational background, few spectroscopic studies have dealt with the measurement of the carbon isotopic ratio in giant stars. However, it is a key element in understanding the mixing mechanisms that occur in the interiors…

太阳与恒星天体物理 · 物理学 2023-12-14 N. Lagarde , R. Minkeviciute , A. Drazdauskas , G. Tautvaisiene , C. Charbonnel , C. Reylé , A. Miglio , T. Kushwahaa , B. Bale

Context: Determining carbon and nitrogen abundances in red giants provides useful diagnostics to test mixing processes in stellar atmospheres. Aims: Our main aim is to determine carbon-to-nitrogen and carbon isotope ratios for evolved…

Context. Investigations of abundances of carbon and nitrogen in the atmospheres of evolved stars of open clusters may provide comprehensive information on chemical composition changes caused by stellar evolution. Aims. Our main aim is to…

太阳与恒星天体物理 · 物理学 2012-03-30 Šarūnas Mikolaitis , Gražina Tautvaišienė , Raffaele Gratton , Angela Bragaglia , Eugenio Carretta

Based on our prior accurate determination of fundamental parameters for 36 Galactic A-, F- and G-type supergiants and bright giants (luminosity classes I and II), we undertook a non-LTE analysis of the carbon abundance in their atmospheres.…

太阳与恒星天体物理 · 物理学 2014-11-12 Leonid S. Lyubimkov , David L. Lambert , Sergey A. Korotin , Tamara M. Rachkovskaya , Dmitry B. Poklad

It is well known that metal-poor red giant branch (RGB) stars show variations in some elemental abundances, including carbon, due to the internal mixing accompanied by their own in situ CN cycle in the hydrogen burning shell. With our new…

星系天体物理 · 物理学 2023-06-28 Jae-Woo Lee

Nitrogen abundances and carbon isotope ratios (12C/13C) in the atmospheres of red giants are known to be influenced by dredge-up of H-burning products and serve as useful probes to study the nature of evolution-induced envelope mixing. We…

太阳与恒星天体物理 · 物理学 2020-01-08 Yoichi Takeda , Masashi Omiya , Hiroki Harakawa , Bun'ei Sato

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.…

Carbon isotope ratios, along with carbon and nitrogen abundances, are derived in a sample of 11 red-giant members of one of the most metal-rich clusters in the Milky Way, NGC 6791. The selected red-giants have a mean metallicity and…

Building upon earlier observations which demonstrate substantial star-to-star differences in the carbon abundances of M13 subgiants, we present new Keck LRIS spectra reaching more that 1.5 mag below the M13 main-sequence turn-off (to V ~…

天体物理学 · 物理学 2015-06-24 Michael M. Briley , Judith G. Cohen , Peter B. Stetson

16O/17O and 12C/13C ratios in 23 M giants are determined from high resolution IR spectra observed with the KPNO FTS. The masses of our sample are estimated with the use of the evolutionary tracks by Claret (2004), which could account for…

天体物理学 · 物理学 2009-11-11 Takashi Tsuji

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…

星系天体物理 · 物理学 2017-02-22 Grazina Tautvaisiene , Arnas Drazdauskas , Angela Bragaglia , Sofia Randich , Renata Zenoviene

We explore the ratio (C/M) of carbon-rich to oxygen-rich thermally pulsing asymptotic giant branch(TP-AGB) stars in the disk of M31 using a combination of moderate-resolution optical spectroscopy from the Spectroscopic Landscape of…

We present CN and CH band measurements for 137 RGB and AGB stars in the Galactic globular cluster M10. Our measurements come from low resolution spectroscopy taken with the Hydra spectrograph on the WIYN-3.5m telescope. We use these…

太阳与恒星天体物理 · 物理学 2018-06-12 Jeffrey M. Gerber , Eileen D. Friel , Enrico Vesperini

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,…

In this work we present the main atmospheric parameters, carbon, nitrogen and oxygen abundances, and 12C/13C ratios determined in a sample of 28 Galactic clump stars. Abundances of carbon were studied using the C2 band at 5086.2 {\AA}. The…

星系天体物理 · 物理学 2013-04-17 G. Tautvaišienė , G. Barisevičius , Y. Chorniy , I. Ilyin , E. Puzeras

Standard stellar evolution theory is inconsistent with the observed isotopic carbon ratio, 12C/13C, in evolved stars. This theory is also inconsistent with the 3He/H abundance ratios observed in Galactic HII regions, when combined with…

天体物理学 · 物理学 2009-11-07 Dana S. Balser , Joseph P. McMullin , T. L. Wilson

We present results from a study of 94 red giant stars in the globular cluster M53. We use low-resolution spectra to measure the strength of CN and CH features at $\sim$3800 and 4300 \r{A}, respectively. The strengths of these features are…

太阳与恒星天体物理 · 物理学 2021-06-09 Jeffrey M. Gerber , Eileen D. Friel , Enrico Vesperini
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