Context. Young, fast-rotating single stars can show dramatically different magnetic signatures and levels of magnetic activity as compared with the Sun. While losing angular momentum due to magnetic breaking and mass loss through stellar winds, the stars gradually spin down resulting in decreasing levels of activity. Studying magnetic activity on such solar analogues plays a key role in understanding the evolution of solar-like stars and allows a glimpse into the past of the Sun as well. Aims: In order to widen our knowledge of the magnetic evolution of the Sun and solar-like stars, magnetic activity of the young solar analog V1358 Ori is investigated. Methods: Fourier analysis of long-term photometric data is used to derive rotational peri...
The evolution in latitude of sunspots is a key feature of the cyclic solar dynamo. Here, we present ...
Context. Magnetic cycles analogous to the solar cycle have been detected in tens of solar-like stars...
A growing body of evidence suggests that multiple dynamo mechanisms can drive magnetic variability o...
Context. Young, fast-rotating single stars can show dramatically different magnetic signatures and l...
Context. The magnetic activity of the Sun changes with the solar cycle. Similar cycles are found in ...
Context. A detailed investigation of the magnetic properties of young Sun-like stars can provide val...
Context. A detailed investigation of the magnetic properties of young Sun-like stars can provide val...
The magnetic fields, activity and dynamos of young solar-type stars can be empirically studied using...
Context. Young solar analogs reaching the main sequence experience very strong magnetic activity, ge...
Context. The large-scale magnetic field of solar-type stars reconstructed from their spectropolarime...
Studying cool star magnetic activity gives an important insight into the stellar dynamo and its rela...
Context. The Sun and solar-like stars undergo activity cycles for which the underlying mechanisms ar...
This thesis describes an investigation aimed at using spectropolarimetric observations of the magnet...
The surface rotation rates of young solar-type stars vary rapidly with age from the end of the pre-m...
Context. Starspots are important manifestations of stellar magnetic activity. By studying their beha...
The evolution in latitude of sunspots is a key feature of the cyclic solar dynamo. Here, we present ...
Context. Magnetic cycles analogous to the solar cycle have been detected in tens of solar-like stars...
A growing body of evidence suggests that multiple dynamo mechanisms can drive magnetic variability o...
Context. Young, fast-rotating single stars can show dramatically different magnetic signatures and l...
Context. The magnetic activity of the Sun changes with the solar cycle. Similar cycles are found in ...
Context. A detailed investigation of the magnetic properties of young Sun-like stars can provide val...
Context. A detailed investigation of the magnetic properties of young Sun-like stars can provide val...
The magnetic fields, activity and dynamos of young solar-type stars can be empirically studied using...
Context. Young solar analogs reaching the main sequence experience very strong magnetic activity, ge...
Context. The large-scale magnetic field of solar-type stars reconstructed from their spectropolarime...
Studying cool star magnetic activity gives an important insight into the stellar dynamo and its rela...
Context. The Sun and solar-like stars undergo activity cycles for which the underlying mechanisms ar...
This thesis describes an investigation aimed at using spectropolarimetric observations of the magnet...
The surface rotation rates of young solar-type stars vary rapidly with age from the end of the pre-m...
Context. Starspots are important manifestations of stellar magnetic activity. By studying their beha...
The evolution in latitude of sunspots is a key feature of the cyclic solar dynamo. Here, we present ...
Context. Magnetic cycles analogous to the solar cycle have been detected in tens of solar-like stars...
A growing body of evidence suggests that multiple dynamo mechanisms can drive magnetic variability o...