Aims. We aim to measure the starspot rotation periods of active stars in the Kepler field as a function of spectral type and to extend reliable rotation measurements from F-, G-, and K-type to M-type stars. Methods. Using the Lomb-Scargle periodogram we searched more than 150 000 stellar light curves for periodic brightness variations. We analyzed periods between 1 and 30 days in eight consecutive Kepler quarters, where 30 days is an estimated maximum for the validity of the PDC_MAP data correction pipeline. We selected stable rotation periods, i.e., periods that do not vary from the median by more than one day in at least six of the eight quarters. We averaged th...
We provide an overview of stellar variability in the first quarter of data from the Kepler mission. ...
Context. During the solar magnetic activity cycle the emergence latitudes of sunspots change, leadin...
Context. Stellar rotation periods can be determined by observing brightness variations caused by act...
Aims. We aim to measure the starspot rotation periods of active stars in the Kepler field as a funct...
We analyzed 3 years of data from the Kepler space mission to derive rotation periods of main-sequenc...
We analyzed 3 years of data from the Kepler space mission to derive rotation periods of main-sequenc...
The recent space-based exoplanet transit searches, CoRoT and Kepler, have revolutionised the field o...
The recent space-based exoplanet transit searches, CoRoT and Kepler, have revolutionised the field o...
Context. The Kepler space telescope leaves a legacy of tens of thousands of stellar rotation period ...
Context. Rotation period measurements of stars observed with the Kepler mission have revealed a lack...
Context. The Kepler space telescope monitors more than 160 000 stars with an unprecedented precision...
Context. The Kepler space telescope monitors more than 160 000 stars with an unprecedented precision...
We have analysed 10 months of public data from the Kepler space mission to measure rotation periods ...
Dark magnetic spots co-rotating with the stellar surface lead to quasi-periodic brightness variation...
Context. In recent years it has been claimed that the length of stellar activity cycles is determine...
We provide an overview of stellar variability in the first quarter of data from the Kepler mission. ...
Context. During the solar magnetic activity cycle the emergence latitudes of sunspots change, leadin...
Context. Stellar rotation periods can be determined by observing brightness variations caused by act...
Aims. We aim to measure the starspot rotation periods of active stars in the Kepler field as a funct...
We analyzed 3 years of data from the Kepler space mission to derive rotation periods of main-sequenc...
We analyzed 3 years of data from the Kepler space mission to derive rotation periods of main-sequenc...
The recent space-based exoplanet transit searches, CoRoT and Kepler, have revolutionised the field o...
The recent space-based exoplanet transit searches, CoRoT and Kepler, have revolutionised the field o...
Context. The Kepler space telescope leaves a legacy of tens of thousands of stellar rotation period ...
Context. Rotation period measurements of stars observed with the Kepler mission have revealed a lack...
Context. The Kepler space telescope monitors more than 160 000 stars with an unprecedented precision...
Context. The Kepler space telescope monitors more than 160 000 stars with an unprecedented precision...
We have analysed 10 months of public data from the Kepler space mission to measure rotation periods ...
Dark magnetic spots co-rotating with the stellar surface lead to quasi-periodic brightness variation...
Context. In recent years it has been claimed that the length of stellar activity cycles is determine...
We provide an overview of stellar variability in the first quarter of data from the Kepler mission. ...
Context. During the solar magnetic activity cycle the emergence latitudes of sunspots change, leadin...
Context. Stellar rotation periods can be determined by observing brightness variations caused by act...