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相关论文: Nitrogen chronology of massive main sequence stars

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Context. Light elements and nitrogen surface abundances together can constrain the mixing efficiencies in massive stars on the main sequence, because moderate mixing at the surface leads to a depletion of light elements but only later to an…

High resolution spectra of seven early B-type giant/supergiant stars in the SMC cluster NGC330 are analysed to obtain their chemical compositions relative to SMC field and Galactic B-type stars. It is found that all seven stars are nitrogen…

天体物理学 · 物理学 2009-11-07 D. J. Lennon , P. L. Dufton , C. Crowley

We have previously analysed the spectra of 135 early B-type stars in the LMC and found several groups of stars that have chemical compositions that conflict with the theory of rotational mixing. Here we extend this study to Galactic and SMC…

太阳与恒星天体物理 · 物理学 2009-11-13 I. Hunter , I. Brott , N. Langer , D. J. Lennon , P. L. Dufton , I. D. Howarth , R. S. I. Ryans , C. Trundle , C. J. Evans , A. de Koter , S. J. Smartt

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 have composed a sample of 68 massive stars in our galaxy whose projected rotational velocity, effective temperature and gravity are available from high-precision spectroscopic measurements. The additional seven observed variables…

太阳与恒星天体物理 · 物理学 2015-06-18 Conny Aerts , Geert Molenberghs , Michael G. Kenward , Coralie Neiner

We present a dense grid of evolutionary tracks and isochrones of rotating massive main-sequence stars. We provide three grids with different initial compositions tailored to compare with early OB stars in the Small and Large Magellanic…

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…

太阳与恒星天体物理 · 物理学 2017-07-12 Constantin Cazorla , Thierry Morel , Yael Naze , Gregor Rauw , Thierry Semaan , Simone Daflon , M. S. Oey

(Abridged) New boron abundances for seven main-sequence B-type stars are determined from HST STIS spectroscopy around the BIII 2066A line. Boron abundances provide a unique and critical test of stellar evolution models that include…

天体物理学 · 物理学 2009-11-13 J. T. Mendel , K. A. Venn , C. R. Proffitt , A. M. Brooks , D. L. Lambert

Photospheric nitrogen abundances for a sample of 26 Be stars and 16 normal B stars were found using high-resolution spectra from the Magnetism in Massive Stars (MiMeS) spectroscopic survey. Nitrogen abundances were obtained using non-LTE…

太阳与恒星天体物理 · 物理学 2017-08-23 A. Ahmed , T. A. A. Sigut

Analyses of large spectroscopic surveys of early-type stars in the LMC have found an excess of nitrogen enriched B-type targets with a vsini<40 km/s compared with the predictions of single star evolutionary models incorporating rotational…

太阳与恒星天体物理 · 物理学 2020-01-29 P. L. Dufton , C. J. Evans , D. J. Lennon , I. Hunter

Rotational mixing in massive stars is a widely applied concept, with far reaching consequences for stellar evolution. Nitrogen surface abundances for a large and homogeneous sample of massive B-type stars in the LMC were obtained by the…

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…

太阳与恒星天体物理 · 物理学 2020-12-09 Constantin Cazorla , Yaël Nazé , Thierry Morel , Cyril Georgy , Mélanie Godart , Norbert Langer

The evolution and fate of massive stars are thought to be affected by rotationally induced internal mixing. The surface boron abundance is a sensitive tracer of this in early B-type main sequence stars. We test current stellar evolution…

太阳与恒星天体物理 · 物理学 2024-10-16 Harim Jin , Norbert Langer , Daniel J. Lennon , Charles R. Proffitt

Aims. We compare the predictions of evolutionary models for early-type stars with atmospheric parameters, projected rotational velocities and nitrogen abundances estimated for a sample of Be-type stars. Our targets are located in 4 fields…

太阳与恒星天体物理 · 物理学 2015-05-30 P. R. Dunstall , I. Brott , P. L. Dufton , D. J. Lennon , C. J. Evans , S. J. Smartt , I. Hunter

Theoretically, rotation-induced chemical mixing in massive stars has far reaching evolutionary consequences, affecting the sequence of morphological phases, lifetimes, nucleosynthesis, and supernova characteristics. Using a sample of 72…

The AF-supergiants in the Galaxy and the SMC allow us to examine predictions from evolution models through their CNO abundances. In these proceedings, we recalculate the NLTE nitrogen abundances in 22 Galactic and 9 SMC A-supergiants using…

天体物理学 · 物理学 2007-05-23 Kim A. Venn , Norbert Przybilla

In order to investigate the possible influence of rotation on the efficiency of the first dredge-up we determined atmospheric parameters, masses, and abundances of carbon, nitrogen, and oxygen in a sample of evolved intermediate mass stars.…

天体物理学 · 物理学 2009-11-11 R. Smiljanic , B. Barbuy , J. R. De Medeiros , A. Maeder

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…

太阳与恒星天体物理 · 物理学 2018-05-16 Nevena Markova , Joachim Puls , Norbert Langer

We study the evolutionary and physical properties of evolved O stars in the Small Magellanic Cloud (SMC), with a special focus on their surface abundances to investigate the efficiency of rotational mixing as a function of age, rotation and…

One of the main uncertainties in evolutionary calculations of massive stars is the efficiency of internal mixing. It changes the chemical profile inside the star and can therefore affect the structure and further evolution. We demonstrate…

天体物理学 · 物理学 2008-11-26 S. E. de Mink , M. Cantiello , N. Langer , O. R. Pols
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