(ngc 1039) and the Evolution of Angular Momentum and Activity in Young Solar-type Stars
نویسنده
چکیده
We analyze Keck Hires observations of rotation and activity in F, G, and K dwarf members of the open cluster M34 (NGC 1039), which is 250 Myr old, and we compare them to the Pleiades, Hyades, and NGC 6475. The upper bound to rotation seen in M34 is about a factor of two lower than for the 100 Myr-old Pleiades, but most M34 stars are well below this upper bound, and it is the overall convergence in rotation rates that is most striking. A few K dwarfs in M34 are still rapid rotators, suggesting that they have undergone core-envelope decoupling, followed by replenishment of surface angular momentum from an internal reservoir. Our comparison of rotation in these clusters indicates that the time scale for the coupling of the envelope to the core must be close to 100 Myr if decoupling does, in fact, occur. Subject headings: clusters: open — stars:late-type — stars:evolution — stars:rotation
منابع مشابه
Rotational Evolution of Solar-Like Stars in Clusters from Pre-Main Sequence to Main Sequence: Empirical Results
Rotation periods are now available for ∼500 pre-main sequence and recently arrived main sequence stars of solar-like mass (0.4-1.2 M⊙) in five nearby young clusters: the Orion Nebula Cluster, NGC 2264, α Per, IC 2602 and the Pleiades. In combination with estimates of stellar radii these data allow us to construct distributions of surface angular momentum per unit mass at three different epochs:...
متن کاملStar/disk interaction and angular momentum evolution model for solar-like stars
The magnetic field in young stellar object is undoubtedly the most important component when one dealing with the angular momentum evolution. It controls this latter one from the pre-main sequence, during the so-called disk locking phase where the stars magnetically interact with their surrounding disk, to the main-sequence through powerful stellar winds that remove angular momentum from the ste...
متن کاملAngular momentum evolution of low-mass pre-main sequence stars via extreme coronal mass ejections
The 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 ...
متن کاملRotation and activity in the solar - type stars of NGC 2547
We present high resolution spectroscopy of a sample of 24 solar-type stars in the young (15-40Myr), open cluster, NGC 2547. We use our spectra to confirm cluster membership in 23 of these stars, determine projected equatorial velocities and chromospheric activity, and to search for the presence of accretion discs. We have found examples of both fast (ve sin i> 50 km s ) and slow (ve sin i< 10 k...
متن کاملThe role of magnetic fields in governing the angular momentum evolution of solar-type stars
I review the development of ideas regarding the angular momentum evolution of solar-type stars, from the early 60’s to the most recent years. Magnetic fields are the central agent that dictates the rotational evolution of solar-type stars, both during the pre-main sequence, through star-disk magnetic coupling, and during the main sequence, through magnetized winds. Key theoretical developments ...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره شماره
صفحات -
تاریخ انتشار 2001