The magnetic field topology and differential rotation are fundamental signatures of the dynamo processes that generate the magnetic activity observed in the Sun and solar-type stars. To investigate how these dynamo processes evolve in stars with shallow convective zones, we present high-resolution spectropolarimetric observations of the young GO dwarf HD171488 over three epochs. Using the Zeeman-Doppler tomographic imaging technique, we have reconstructed surface brightness images that are dominated by polar and high-latitude starspots and a magnetic field topology that shows large-scale radial and azimuthal magnetic field components. Over the time-span of our observations, we do not observe a reversal of the magnetic field polarity as has ...
Magnetic fields of cool stars can be directly investigated through the study of the Zeeman effect on...
Context. By studying young magnetically active late-type stars, i.e. analogues to the young Sun, we ...
International audienceWe present here additional results of a spectropolarimetric survey of a small ...
International audienceThe magnetic field topology and differential rotation are fundamental signatur...
We present spectropolarimetric observations of the young, single early G-dwarf HD 171488. These obse...
Observations of the magnetic fields of young solar-type stars provide a way to investigate the signa...
The magnetic fields, activity and dynamos of young solar-type stars can be empirically studied using...
In solar-type stars, the generation of magnetic field through dynamo effect concentrates in the tach...
Context. The magnetic activity of the Sun changes with the solar cycle Similar cycles are found in o...
Surface brightness maps for the young K0 dwarf AB Doradus are reconstructed from archival data sets ...
Context. The large-scale magnetic field of solar-type stars reconstructed from their spectropolarime...
Magnetic fields of cool stars can be directly investigated through the study of the Zeeman effect on...
Context. By studying young magnetically active late-type stars, i.e. analogues to the young Sun, we ...
International audienceWe present here additional results of a spectropolarimetric survey of a small ...
International audienceThe magnetic field topology and differential rotation are fundamental signatur...
We present spectropolarimetric observations of the young, single early G-dwarf HD 171488. These obse...
Observations of the magnetic fields of young solar-type stars provide a way to investigate the signa...
The magnetic fields, activity and dynamos of young solar-type stars can be empirically studied using...
In solar-type stars, the generation of magnetic field through dynamo effect concentrates in the tach...
Context. The magnetic activity of the Sun changes with the solar cycle Similar cycles are found in o...
Surface brightness maps for the young K0 dwarf AB Doradus are reconstructed from archival data sets ...
Context. The large-scale magnetic field of solar-type stars reconstructed from their spectropolarime...
Magnetic fields of cool stars can be directly investigated through the study of the Zeeman effect on...
Context. By studying young magnetically active late-type stars, i.e. analogues to the young Sun, we ...
International audienceWe present here additional results of a spectropolarimetric survey of a small ...