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Related papers: Mixing in magnetic OB stars

200 papers

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…

Astrophysics · Physics 2007-05-23 Kim A. Venn , Norbert Przybilla

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: 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

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…

Massive stars burn hydrogen through the CNO cycle during most of their evolution. When mixing is efficient, or when mass transfer in binary systems happens, chemically processed material is observed at the surface of O and B stars. ON stars…

Solar and Stellar Astrophysics · Physics 2015-04-24 F. Martins , S. Simon-Diaz , A. Palacios , I. Howarth , C. Georgy , N. R. Walborn , J. -C. Bouret , R. Barba

We have used VLT FLAMES data to constrain the uncertain physics of rotational mixing in stellar evolution models. We have simulated a population of single stars and find two groups of observed stars that cannot be explained: (1) a group of…

Astrophysics · Physics 2009-01-21 I. Brott , I. Hunter , A. de Koter , N. Langer , D. Lennon , P. Dufton

For the first time, a direct NLTE analysis of carbon and nitrogen lines in the spectra of nine RR Lyrae stars was carried out. We have determined the abundances of these elements together with oxygen, and have shown that the nitrogen…

Solar and Stellar Astrophysics · Physics 2021-10-04 Sergei M. Andrievsky , Sergey A. Korotin , Valery V. Kovtyukh , Sergey V. Khrapaty , Yuri Rudyak

We present the results of a detailed NLTE abundance study of nine beta Cephei stars, all of them being prime targets for theoretical modelling: gamma Peg, delta Cet, nu Eri, beta CMa, xi1 CMa, V836 Cen, V2052 Oph, beta Cep and DD (12) Lac.…

Astrophysics · Physics 2009-11-11 T. Morel , K. Butler , C. Aerts , C. Neiner , M. Briquet

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…

Understanding the nucleosynthetic origin of nitrogen and the evolution of the N/O ratio in the interstellar medium is crucial for a comprehensive picture of galaxy chemical evolution at high-redshift because most observational metallicity…

Astrophysics of Galaxies · Physics 2022-12-13 Arpita Roy , Mark R. Krumholz , Michael A. Dopita , Ralph S. Sutherland , Lisa J. Kewley , Alexander Heger

Massive stars rotate faster, on average, than lower mass stars. Stellar rotation triggers hydrodynamical instabilities which transport angular momentum and chemical species from the core to the surface. Models of high-mass stars that…

We examine some debated points in current discussions about rotating stars: the shape, the gravity darkening, the critical velocities, the mass loss rates, the hydrodynamical instabilities, the internal mixing and N--enrichments. The study…

Solar and Stellar Astrophysics · Physics 2015-06-22 Andre Maeder , Georges Meynet

We review recent developments in determining the evolution of magnetic massive OB stars. One of the important scientific questions is the completeness and the detection limits of contemporaneous spectropolarimetric surveys across the HR…

Solar and Stellar Astrophysics · Physics 2020-04-10 Veronique Petit , Alexandre David-Uraz

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…

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…

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…

Astrophysics · Physics 2008-11-26 S. E. de Mink , M. Cantiello , N. Langer , O. R. Pols

(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…

Astrophysics · Physics 2009-11-13 J. T. Mendel , K. A. Venn , C. R. Proffitt , A. M. Brooks , D. L. Lambert

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…

Astrophysics · Physics 2009-11-07 D. J. Lennon , P. L. Dufton , C. Crowley

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

The Magnetism in Massive Stars (MiMeS) survey represents a high precision systematic search for magnetic fields in hot, massive OB stars. To date, MiMeS Large Programs (ESPaDOnS@CFHT, Narval@TBL, [email protected]) and associated PI programs…

Solar and Stellar Astrophysics · Physics 2012-06-26 G. A. Wade , J. H. Grunhut , the MiMeS Collaboration