International audienceThe angular momentum evolution of cool stars during the pre-main sequence phase of stellar evolution remains a major outstanding problem. Multiple processes are likely involved in the transfer of mass and angular momentum within and out of the star+disk system. The role of coronal mass ejections (CMEs), energetic events which shed mass and magnetic flux in the Sun, has yet to be fully explored in the context of pre-main sequence stars. It is well established that young, solar-type stars exhibit X-ray activity levels up to four orders of magnitude higher than the present-day Sun, suggesting that CMEs associated with these extreme X-ray flares could be an important process for expelling mass and angular momentum. We pres...
Coronal mass ejections (CMEs), often associated with flares(1-3), are the most powerful magnetic phe...
Context. Flares and coronal mass ejections (CMEs) can have deleterious effects on their surroundings...
International audienceContext. The early pre-main sequence phase during which solar-mass stars are s...
International audienceThe angular momentum evolution of cool stars during the pre-main sequence phas...
International audienceWe develop an empirical model to estimate mass-loss rates via coronal mass eje...
Conference Proceeding© International Astronomical Union 2013In our own solar system, the necessity o...
Solar coronal mass ejections (CMEs) and flares have a statistically well-defined relationship, with ...
Context. Understanding the physical processes that dictate the angular momentum evolution of solar-t...
Context. The stellar mass loss rate is important for the rotational evolution of a star and for its ...
The magnetic field in young stellar object is undoubtedly the most important component when one deal...
The evolutionary behavior of rotating low mass stars has been investigated with angular momentum los...
Context. Understanding the origin and evolution of stellar angular momentum is one of the ...
Coronal mass ejections (CMEs), often associated with flares(1-3), are the most powerful magnetic phe...
Context. Flares and coronal mass ejections (CMEs) can have deleterious effects on their surroundings...
International audienceContext. The early pre-main sequence phase during which solar-mass stars are s...
International audienceThe angular momentum evolution of cool stars during the pre-main sequence phas...
International audienceWe develop an empirical model to estimate mass-loss rates via coronal mass eje...
Conference Proceeding© International Astronomical Union 2013In our own solar system, the necessity o...
Solar coronal mass ejections (CMEs) and flares have a statistically well-defined relationship, with ...
Context. Understanding the physical processes that dictate the angular momentum evolution of solar-t...
Context. The stellar mass loss rate is important for the rotational evolution of a star and for its ...
The magnetic field in young stellar object is undoubtedly the most important component when one deal...
The evolutionary behavior of rotating low mass stars has been investigated with angular momentum los...
Context. Understanding the origin and evolution of stellar angular momentum is one of the ...
Coronal mass ejections (CMEs), often associated with flares(1-3), are the most powerful magnetic phe...
Context. Flares and coronal mass ejections (CMEs) can have deleterious effects on their surroundings...
International audienceContext. The early pre-main sequence phase during which solar-mass stars are s...