International audienceContext. The red supergiant (RSG) Betelgeuse is an irregular variable star. Convection may play an important role in understanding this variability. Interferometric observations can be interpreted using sophisticated simulations of stellar convection. Aims: We compare the visibility curves and closure phases obtained from our 3D simulation of RSG convection with CO5BOLD to various interferometric observations of Betelgeuse from the optical to the H band to characterize and measure the convection pattern on this star. Methods: We use a 3D radiative-hydrodynamics (RHD) simulation to compute intensity maps in different filters and thus derive interferometric observables using the post-processing radiative transfer code ...
As red supergiants are the largest and brightest stars, they are ideal targets for the new...
Based on observations made with ESO telescopes at Paranal Observatory, under ESO programs 288.D-5035...
International audienceContext. Red supergiants are massive evolved stars that contribute extensively...
International audienceContext. The red supergiant (RSG) Betelgeuse is an irregular variable star. Co...
Context. The red supergiant (RSG) Betelgeuse is an irregular variable star. Convection may play an ...
International audienceContext. The mass-loss mechanism of cool massive evolved stars is poorly under...
International audienceContext. The mass-loss mechanism of cool massive evolved stars is poorly under...
Context. The mass-loss mechanism of cool massive evolved stars is poorly understood. The proximity o...
Context. The mass-loss mechanism of cool massive evolved stars is poorly understood. The proximity o...
We developed a 3D pure LTE radiative transfer code to derive observables expected for RSGs, with em...
Context. Convection is a candidate to explain the trigger of red supergiant star (RSG) mass loss. Ow...
As red supergiants are the largest and brightest stars, they are ideal targets for the new...
Based on observations made with ESO telescopes at Paranal Observatory, under ESO programs 288.D-5035...
International audienceContext. Red supergiants are massive evolved stars that contribute extensively...
International audienceContext. The red supergiant (RSG) Betelgeuse is an irregular variable star. Co...
Context. The red supergiant (RSG) Betelgeuse is an irregular variable star. Convection may play an ...
International audienceContext. The mass-loss mechanism of cool massive evolved stars is poorly under...
International audienceContext. The mass-loss mechanism of cool massive evolved stars is poorly under...
Context. The mass-loss mechanism of cool massive evolved stars is poorly understood. The proximity o...
Context. The mass-loss mechanism of cool massive evolved stars is poorly understood. The proximity o...
We developed a 3D pure LTE radiative transfer code to derive observables expected for RSGs, with em...
Context. Convection is a candidate to explain the trigger of red supergiant star (RSG) mass loss. Ow...
As red supergiants are the largest and brightest stars, they are ideal targets for the new...
Based on observations made with ESO telescopes at Paranal Observatory, under ESO programs 288.D-5035...
International audienceContext. Red supergiants are massive evolved stars that contribute extensively...