© ESO 2018. The large-scale magnetic fields detected at the surface of about 10% of hot stars extend into the stellar interior, where they may alter the structure. Deep inner regions of stars are only observable using asteroseismology. Here, we investigate the pulsating magnetic B3.5V star HD 43317, infer its interior properties and assess whether the dipolar magnetic field with a surface strength of B p = 1312 ± 332 G causes different properties compared to those of non-magnetic stars. We analyze the latest version of the star's 150 d CoRoT light curve and extract 35 significant frequencies, 28 of which are found to be independent and not related to the known surface rotation period of P rot = 0.897673 d. We perform forward seismic modeli...
Context. We present modelling of the β Cep star HD 180642 based on its observational properties dedu...
International audienceContext. Angular momentum (AM) transport models of stellar interiors require i...
Context. Exoplanet properties crucially depend on the parameters of their host stars: more accurate ...
International audienceThe large-scale magnetic fields detected at the surface of about 10% of hot st...
Context. A promising way of testing the impact of a magnetic field on internal mixing (core overshoo...
Large-scale magnetic fields at the surface of massive stars do not only influence the outer-most lay...
International audienceLarge-scale magnetic fields at the surface of massive stars do not only influe...
International audienceLarge-scale magnetic fields at the surface of massive stars do not only influe...
Large-scale magnetic fields at the surface of massive stars do not only influence the outer-most lay...
International audienceContext: HD 181231 is a B5IVe star, which has been observed with the CoRoT sat...
Contains fulltext : 195374.pdf (preprint version ) (Open Access
© ESO 2018. Context: The physics of magnetic hot stars and how a large-scale magnetic field affects ...
Item does not contain fulltextOB stars are important building blocks of the Universe, but we have on...
Context. We present modelling of the β Cep star HD 180642 based on its observational properties dedu...
International audienceContext. Angular momentum (AM) transport models of stellar interiors require i...
Context. Exoplanet properties crucially depend on the parameters of their host stars: more accurate ...
International audienceThe large-scale magnetic fields detected at the surface of about 10% of hot st...
Context. A promising way of testing the impact of a magnetic field on internal mixing (core overshoo...
Large-scale magnetic fields at the surface of massive stars do not only influence the outer-most lay...
International audienceLarge-scale magnetic fields at the surface of massive stars do not only influe...
International audienceLarge-scale magnetic fields at the surface of massive stars do not only influe...
Large-scale magnetic fields at the surface of massive stars do not only influence the outer-most lay...
International audienceContext: HD 181231 is a B5IVe star, which has been observed with the CoRoT sat...
Contains fulltext : 195374.pdf (preprint version ) (Open Access
© ESO 2018. Context: The physics of magnetic hot stars and how a large-scale magnetic field affects ...
Item does not contain fulltextOB stars are important building blocks of the Universe, but we have on...
Context. We present modelling of the β Cep star HD 180642 based on its observational properties dedu...
International audienceContext. Angular momentum (AM) transport models of stellar interiors require i...
Context. Exoplanet properties crucially depend on the parameters of their host stars: more accurate ...