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Related papers: CNO in evolved intermediate mass stars

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Many observational results seem to indicate more efficient mixing processes in intermediate mass stars (5-20 M$_{\odot}$) than the expected by the standard models. These processes are usually thought to be caused by stellar rotation. Our…

Astrophysics · Physics 2007-05-23 R. Smiljanic , B. Barbuy , J. R. De Medeiros , A. Maeder

Aims: Recent observations have challenged our understanding of rotational mixing in massive stars by revealing a population of fast-rotating objects with apparently normal surface nitrogen abundances. However, several questions have arisen…

Solar and Stellar Astrophysics · Physics 2017-07-12 Constantin Cazorla , Thierry Morel , Yael Naze , Gregor Rauw , Thierry Semaan , Simone Daflon , M. S. Oey

Aims: Past observations of fast-rotating massive stars exhibiting normal nitrogen abundances at their surface have raised questions about the rotational mixing paradigm. We revisit this question thanks to a spectroscopic analysis of a…

Solar and Stellar Astrophysics · Physics 2020-12-09 Constantin Cazorla , Yaël Nazé , Thierry Morel , Cyril Georgy , Mélanie Godart , Norbert Langer

Massive stars play a key role in the evolution of the Universe. Our goal is to compare observed and predicted properties of single Galactic O stars to identify and constrain uncertain physical parameters and processes in stellar evolution…

Solar and Stellar Astrophysics · Physics 2018-05-16 Nevena Markova , Joachim Puls , Norbert Langer

The nitrogen to carbon (N/C) and nitrogen to oxygen (N/O) ratios are the most sensitive quantities to mixing in stellar interiors of intermediate and massive stars. We further investigate the theoretical properties of these ratios as well…

Recent observations have revealed the existence of a population of slowly-rotating, nitrogen-rich B dwarfs that are not predicted by evolutionary models including rotational mixing. However, as theoretical arguments suggest that magnetic…

Solar and Stellar Astrophysics · Physics 2010-10-21 Thierry Morel

Surface abundances of C, N, and O in red giants are affected by processed material mixed into the stars' convective envelopes. Using a sample of $\sim 5100$ stars with elemental abundances from APOGEE and asteroseismic masses from {\it…

We examine the role of rotation on the evolution and chemical yields of very metal--poor stars. The models include the same physics, which was applied successfully at the solar $Z$ and for the SMC, in particular, shear diffusion, meridional…

Astrophysics · Physics 2009-11-11 Georges Meynet , Sylvia Ekstrom , Andre Maeder

Aims: We test predictions of evolution models on mixing of CNO-cycled products in massive stars from a fundamental perspective. Relative changes within the theoretical C:N:O abundance ratios and the buildup of helium are compared with…

Solar and Stellar Astrophysics · Physics 2010-05-14 N. Przybilla , M. Firnstein , M. F. Nieva , G. Meynet , A. Maeder

Context. Carbon, nitrogen, and oxygen are the most abundant elements throughout the universe, after hydrogen and helium. Studying these elements in low-metallicity stars can provide crucial information on the chemical composition in the…

High dispersion near-infrared spectra have been taken of seven highly-evolved, variable, intermediate-mass (4-6 Msun) AGB stars in the LMC and SMC in order to look for C, N and O variations that are expected to arise from third dredge-up…

Astrophysics · Physics 2009-11-13 J. A. McSaveney , P. R. Wood , M. Scholz , J. C. Lattanzio , K. H. Hinkle

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…

Astrophysics of Galaxies · Physics 2013-04-17 G. Tautvaišienė , G. Barisevičius , Y. Chorniy , I. Ilyin , E. Puzeras

The Hipparcos orbiting observatory has revealed a large number of helium-core-burning "clump" stars in the Galactic field. These low-mass stars exhibit signatures of extra-mixing processes that require modeling beyond the first dredge-up of…

Solar and Stellar Astrophysics · Physics 2015-05-19 G. Tautvaisiene , B. Edvardsson , E. Puzeras , G. Barisevicius , I. Ilyin

High-resolution spectral analysis is performed for the first time in evolved stars of two young open clusters: NGC 4609 and NGC 5316, of about 80 and 100 Myr in age, respectively, and turn-off masses above 5 Msun. Stellar evolution models…

Solar and Stellar Astrophysics · Physics 2016-08-31 Arnas Drazdauskas , Grazina Tautvaisiene , Rodolfo Smiljanic , Vilius Bagdonas , Yuriy Chorniy

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…

Solar and Stellar Astrophysics · Physics 2020-01-08 Yoichi Takeda , Masashi Omiya , Hiroki Harakawa , Bun'ei Sato

Rotation has become an important element in evolutionary models of massive stars, specifically via the prediction of rotational mixing. Here, we study a sample of stars, including rapid rotators, to constrain such models and use nitrogen…

We describe the main-sequence evolution of a rotating 9 $M_\odot$ star. Its interior rotation profile is determined by the redistribution of angular momentum through the meridian circulation and through the shear turbulence generated by the…

Astrophysics · Physics 2007-05-23 Suzanne Talon , Jean-Paul Zahn , Andre Maeder , Georges Meynet

AGB stars have long been held responsible for the important star-to-star variations in light elements observed in Galactic globular clusters. We analyse the main impacts of a first generation of rotating intermediate-mass stars on the…

Solar and Stellar Astrophysics · Physics 2015-05-13 T. Decressin , C. Charbonnel , L. Siess , A. Palacios , G. Meynet , C. Georgy

Low-mass stars are element factories that efficiently release their products in the final stages of their evolution by means of stellar winds. Since they are large in number, they contribute significantly to the cosmic matter cycle. To…

Solar and Stellar Astrophysics · Physics 2015-05-13 Michael T. Lederer , Thomas Lebzelter , Sergio Cristallo , Oscar Straniero , Kenneth H. Hinkle , Bernhard Aringer

Carbon, nitrogen, and oxygen (CNO) are key elements in stellar formation and evolution, and their abundances should also have a significant impact on planetary formation and evolution. We present a detailed spectroscopic analysis of 74…

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