We study the relation between stellar rotation and magnetic activity fora sample of 134 bright, nearby M dwarfs observed in the Kepler Two-Wheel (K2) mission during campaigns C0-C4. The K2 light curves yield photometrically derived rotation periods for 97 stars (79 of which without previous period measurement), as well as various measures for activity related to cool spots and flares. We find a clear difference between fast and slow rotators with a dividing line at a period of ~10 d at which the activity level changes abruptly. All photometric diagnostics of activity (spot cycle amplitude, flare peak amplitude and residual variability after subtraction of spot and flare variations) display the same dichotomy, pointing to a quick transition ...
Funding: UK STFC grant no. ST/R000824/1 (A.S.).Using light curves obtained by the K2 mission, we stu...
The activity of the Sun and solar-like stars is driven by an \(\alpha\Omega\)−dynamo, according to w...
Studies of the rotation and activity of M type stars are essential to enhance our understanding of s...
We study the relation between stellar rotation and magnetic activity fora sample of 134 bright, near...
This is the final version of the article. Available from Oxford University Press via the DOI in this...
Using light curves obtained by the K2 mission, we study the relation between stellar rotation and ma...
The activity-rotation relation of M dwarfs provides observational evidence of the stellar dynamo, w...
We present an updated view of the rotation-activity-age relation for (old) field M dwarfs based on K...
<p>We present an updated view of the rotation-activity-age relation for (old) field M dwarfs based o...
Studies of the rotation-activity relation of late-type stars are essential to enhance our understand...
Studies of the rotation-activity relation of late-type stars are essential to enhance our understand...
Studies of the rotation-activity relation of late-type stars are essential to enhance our understand...
Studies of the rotation–activity relation of late‐type stars are essential to enhance our understand...
Studies of the rotation–activity relation of late‐type stars are essential to enhance our understand...
Studies of the rotation–activity relation of late‐type stars are essential to enhance our understand...
Funding: UK STFC grant no. ST/R000824/1 (A.S.).Using light curves obtained by the K2 mission, we stu...
The activity of the Sun and solar-like stars is driven by an \(\alpha\Omega\)−dynamo, according to w...
Studies of the rotation and activity of M type stars are essential to enhance our understanding of s...
We study the relation between stellar rotation and magnetic activity fora sample of 134 bright, near...
This is the final version of the article. Available from Oxford University Press via the DOI in this...
Using light curves obtained by the K2 mission, we study the relation between stellar rotation and ma...
The activity-rotation relation of M dwarfs provides observational evidence of the stellar dynamo, w...
We present an updated view of the rotation-activity-age relation for (old) field M dwarfs based on K...
<p>We present an updated view of the rotation-activity-age relation for (old) field M dwarfs based o...
Studies of the rotation-activity relation of late-type stars are essential to enhance our understand...
Studies of the rotation-activity relation of late-type stars are essential to enhance our understand...
Studies of the rotation-activity relation of late-type stars are essential to enhance our understand...
Studies of the rotation–activity relation of late‐type stars are essential to enhance our understand...
Studies of the rotation–activity relation of late‐type stars are essential to enhance our understand...
Studies of the rotation–activity relation of late‐type stars are essential to enhance our understand...
Funding: UK STFC grant no. ST/R000824/1 (A.S.).Using light curves obtained by the K2 mission, we stu...
The activity of the Sun and solar-like stars is driven by an \(\alpha\Omega\)−dynamo, according to w...
Studies of the rotation and activity of M type stars are essential to enhance our understanding of s...