Epsilon Eri is a young solar-like star with a ~3 yr X-ray activity cycle, detected by us for the first time in a dedicated XMM-Newton long-term monitoring campaign. The magnetic structures on the Sun are intimately linked to the 11-yr activity cycle and they were spatially and temporally resolved throughout the solar cycle. However, for other stars these structures can not be spatially resolved with present-day X-ray instruments. We have, thus, developed a new technique which allows us to reproduce the stellar X-ray variability in terms of time-variations in the coverage of the corona with the same kind of magnetic structures observed on the Sun: active regions (ARs), cores of active regions (COs) and flares (FLs). This poster presents this...
Based on Yohkoh Soft X-Ray Telescope (SXT) observations of the Sun near peak activity level obtained...
The active K2 dwarf ǫ Eri has been extensively characterized, both as a young solar analog and more ...
The presence of magnetic fields in the atmosphere of the late-type stars determines the formation of...
The X-ray satellite XMM-Newton has so far revealed coronal cycles in seven solar-like stars. Of thes...
Chromospheric Ca II activity cycles are frequently found in late-type stars, but no systematic progr...
The X-ray satellite XMM-Newton has so far revealed coronal cycles in seven solar-like stars. In this...
Throughout an activity cycle, magnetic structures rise to the stellar surface, evolve and decay. Tra...
Chromospheric Ca II activity cycles are frequently found in late-type stars, but no systematic progr...
The Sun is the late-type star we can study with the highest level of detail. In the interpretation o...
The Sun is the late-type star we can study with the highest level of detail. In the interpretation o...
We study X-ray-synthesized spectra of solar regions as templates to interpret analogous stellar spec...
The young and magnetically active K dwarf Epsilon Eridani exhibits a chromospheric activity cycle of...
8 pages, 5 figures: Accepted by A&AInternational audienceCool main-sequence stars, such as the Sun, ...
The young and magnetically active K dwarf eps Eridani exhibits a chromospheric activity cycle of abo...
Context. Chromospheric activity cycles are common in late-type stars; however, only a handful of cor...
Based on Yohkoh Soft X-Ray Telescope (SXT) observations of the Sun near peak activity level obtained...
The active K2 dwarf ǫ Eri has been extensively characterized, both as a young solar analog and more ...
The presence of magnetic fields in the atmosphere of the late-type stars determines the formation of...
The X-ray satellite XMM-Newton has so far revealed coronal cycles in seven solar-like stars. Of thes...
Chromospheric Ca II activity cycles are frequently found in late-type stars, but no systematic progr...
The X-ray satellite XMM-Newton has so far revealed coronal cycles in seven solar-like stars. In this...
Throughout an activity cycle, magnetic structures rise to the stellar surface, evolve and decay. Tra...
Chromospheric Ca II activity cycles are frequently found in late-type stars, but no systematic progr...
The Sun is the late-type star we can study with the highest level of detail. In the interpretation o...
The Sun is the late-type star we can study with the highest level of detail. In the interpretation o...
We study X-ray-synthesized spectra of solar regions as templates to interpret analogous stellar spec...
The young and magnetically active K dwarf Epsilon Eridani exhibits a chromospheric activity cycle of...
8 pages, 5 figures: Accepted by A&AInternational audienceCool main-sequence stars, such as the Sun, ...
The young and magnetically active K dwarf eps Eridani exhibits a chromospheric activity cycle of abo...
Context. Chromospheric activity cycles are common in late-type stars; however, only a handful of cor...
Based on Yohkoh Soft X-Ray Telescope (SXT) observations of the Sun near peak activity level obtained...
The active K2 dwarf ǫ Eri has been extensively characterized, both as a young solar analog and more ...
The presence of magnetic fields in the atmosphere of the late-type stars determines the formation of...