We combine stellar surface rotation periods determined from NASA's Kepler mission with spectroscopic temperatures to demonstrate the existence of pileups at the long-period and short-period edges of the temperature-period distribution for main-sequence stars with temperatures exceeding $\sim 5500$K. The long-period pileup is well-described by a curve of constant Rossby number, with a critical value of $\mathrm{Ro_{crit}} \lesssim 2$. The long-period pileup was predicted by van Saders et al. (2019) as a consequence of weakened magnetic braking, in which wind-driven angular momentum losses cease once stars reach a critical Rossby number. Stars in the long-period pileup are found to have a wide range of ages ($\sim 2-6$Gyr), meaning that, alon...
Context. The Kepler space telescope leaves a legacy of tens of thousands of stellar rotation period ...
Stellar magnetic activity studies are very important for different fields of astrophysics. Several s...
International audienceTo better understand the observed distributions of the rotation rate and magne...
Datasets for "Further Evidence of Modified Spin-down in Sun-like Stars: Pileups in the Temperature–P...
Solar-like stars (M ≲ 1.3 M⊙) lose angular momentum through their magnetized winds. The resulting ev...
Ap stars have the strongest magnetic fields of any main sequence star. As a group they rotate more s...
The spin-down of main sequence cool stars with time can be used as a tool to provide stellar ages un...
Context. Observations of young open clusters show a bimodal distribution of stellar rotation. In tho...
We have analysed 10 months of public data from the Kepler space mission to measure rotation periods ...
We propose a simple interpretation of the rotation period data for solar- and late-type stars. The o...
Anti-solar differential rotation (DR) profiles are characterized by a slow equator and fast rotating...
Context. Anti-solar differential rotation profiles have been found for decades in numerical simulati...
Aims. We analyse the relation between the activity cycle length and the Rossby number, which serves ...
We analyzed 3 years of data from the Kepler space mission to derive rotation periods of main-sequenc...
The fact that stellar rotation and chromospheric emission are correlated with age was explicitly not...
Context. The Kepler space telescope leaves a legacy of tens of thousands of stellar rotation period ...
Stellar magnetic activity studies are very important for different fields of astrophysics. Several s...
International audienceTo better understand the observed distributions of the rotation rate and magne...
Datasets for "Further Evidence of Modified Spin-down in Sun-like Stars: Pileups in the Temperature–P...
Solar-like stars (M ≲ 1.3 M⊙) lose angular momentum through their magnetized winds. The resulting ev...
Ap stars have the strongest magnetic fields of any main sequence star. As a group they rotate more s...
The spin-down of main sequence cool stars with time can be used as a tool to provide stellar ages un...
Context. Observations of young open clusters show a bimodal distribution of stellar rotation. In tho...
We have analysed 10 months of public data from the Kepler space mission to measure rotation periods ...
We propose a simple interpretation of the rotation period data for solar- and late-type stars. The o...
Anti-solar differential rotation (DR) profiles are characterized by a slow equator and fast rotating...
Context. Anti-solar differential rotation profiles have been found for decades in numerical simulati...
Aims. We analyse the relation between the activity cycle length and the Rossby number, which serves ...
We analyzed 3 years of data from the Kepler space mission to derive rotation periods of main-sequenc...
The fact that stellar rotation and chromospheric emission are correlated with age was explicitly not...
Context. The Kepler space telescope leaves a legacy of tens of thousands of stellar rotation period ...
Stellar magnetic activity studies are very important for different fields of astrophysics. Several s...
International audienceTo better understand the observed distributions of the rotation rate and magne...