Context. Asteroseismology of massive pulsating stars of β Cep and SPB types can help us to uncover the internal structure of massive stars and understand certain physical phenomena that are taking place in their interiors. We study β Centauri (Agena), a triple system with two massive fast-rotating early B-type components which show p- and g-mode pulsations; the system’s secondary is also known to have a measurable magnetic field. Aims. This paper aims to precisely determine the masses and detect pulsation modes in the two massive components of β Cen with BRITE-Constellation photometry. In addition, seismic models for the components are cons...
Context. Massive stars are important for the chemical enrichment of the universe. Since internal mix...
International audienceAbout 10 % of early-type stars host a large-scale magnetic field, which is exp...
We report an analysis of the first known β Cep pulsator observed by the Transiting Exoplanet Survey ...
Massive stars are important metal factories which provide energy and chemical feedback to their surr...
Context. Exoplanet properties crucially depend on the parameters of their host stars: more accurate ...
International audienceContext. Exoplanet properties crucially depend on the parameters of their host...
Abstract: This thesis presents the results of an extensive observational research programme into the...
Context.The β Cephei stars have been studied for over a hundred years. Despite this, many interestin...
Context. The β Cephei pulsators are massive, ∼8−25 M⊙ essentially on the main sequence, stars. The n...
A paraîtreInternational audienceContext. Stellar rotation affects the transport of chemical elements...
Asteroseismology probes the internal structures of stars by using their natural pulsation frequencie...
Context. Stellar rotation affects the transport of chemical elements and angular momentum and is the...
Asteroseismology, which consists in measuring properties of p-mode oscillations, provides a unique t...
Context. Slowly pulsating B (SPB) stars are upper main-sequence multi-periodic pulsators that show n...
Context. Massive stars are important for the chemical enrichment of the universe. Since internal mix...
International audienceAbout 10 % of early-type stars host a large-scale magnetic field, which is exp...
We report an analysis of the first known β Cep pulsator observed by the Transiting Exoplanet Survey ...
Massive stars are important metal factories which provide energy and chemical feedback to their surr...
Context. Exoplanet properties crucially depend on the parameters of their host stars: more accurate ...
International audienceContext. Exoplanet properties crucially depend on the parameters of their host...
Abstract: This thesis presents the results of an extensive observational research programme into the...
Context.The β Cephei stars have been studied for over a hundred years. Despite this, many interestin...
Context. The β Cephei pulsators are massive, ∼8−25 M⊙ essentially on the main sequence, stars. The n...
A paraîtreInternational audienceContext. Stellar rotation affects the transport of chemical elements...
Asteroseismology probes the internal structures of stars by using their natural pulsation frequencie...
Context. Stellar rotation affects the transport of chemical elements and angular momentum and is the...
Asteroseismology, which consists in measuring properties of p-mode oscillations, provides a unique t...
Context. Slowly pulsating B (SPB) stars are upper main-sequence multi-periodic pulsators that show n...
Context. Massive stars are important for the chemical enrichment of the universe. Since internal mix...
International audienceAbout 10 % of early-type stars host a large-scale magnetic field, which is exp...
We report an analysis of the first known β Cep pulsator observed by the Transiting Exoplanet Survey ...