Context. Despite being the best studied red supergiant star in our Galaxy, the physics behind the photometric variability and mass loss of Betelgeuse is poorly understood. Moreover, recently the star has experienced an unusual fading with its visual magnitude reaching a historical minimum. The nature of this event was investigated by several studies where mechanisms, such as episodic mass loss and the presence of dark spots in the photosphere, were invoked. Aims. We aim to relate the atmospheric dynamics of Betelgeuse to its photometric variability, with the main focus on the dimming event. Methods. We used the tomographic method which allowed us to probe different depths in the stellar atmosphere and to recover the corresponding disk-avera...
Red supergiants are a class of massive stars, who will soon end their lives as supernovae. Time vari...
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. Despite being the best studied red supergiant star in our Galaxy, the physics behind the ph...
International audienceThe bright supergiant, Betelgeuse (Alpha Orionis, HD 39801), underwent a histo...
Red supergiants are the most common final evolutionary stage of stars that have initial masses betwe...
The bright supergiant, Betelgeuse (Alpha Orionis, HD 39801), underwent a historic optical dimming du...
The bright supergiant Betelgeuse (Alpha Orionis, HD 39801) experienced a visual dimming during 2019 ...
International audienceAbstract From Nov. 2019 to May 2020, the red supergiant star Betelgeuse experi...
Context. The mass-loss mechanism of cool massive evolved stars is poorly understood. The proximity o...
Red supergiants are a class of massive stars, who will soon end their lives as supernovae. Time vari...
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. Despite being the best studied red supergiant star in our Galaxy, the physics behind the ph...
International audienceThe bright supergiant, Betelgeuse (Alpha Orionis, HD 39801), underwent a histo...
Red supergiants are the most common final evolutionary stage of stars that have initial masses betwe...
The bright supergiant, Betelgeuse (Alpha Orionis, HD 39801), underwent a historic optical dimming du...
The bright supergiant Betelgeuse (Alpha Orionis, HD 39801) experienced a visual dimming during 2019 ...
International audienceAbstract From Nov. 2019 to May 2020, the red supergiant star Betelgeuse experi...
Context. The mass-loss mechanism of cool massive evolved stars is poorly understood. The proximity o...
Red supergiants are a class of massive stars, who will soon end their lives as supernovae. Time vari...
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...