The elemental composition in the coronae of low-activity solar-like stars appears to be related to fundamental stellar properties such as rotation, surface gravity, and spectral type. Here we use full-Sun observations from the Solar Dynamics Observatory, to show that when the Sun is observed as a star, the variation of coronal composition is highly correlated with a proxy for solar activity, the F10.7 cm radio flux, and therefore with the solar cycle phase. Similar cyclic variations should therefore be detectable spectroscopically in X-ray observations of solar analogs. The plasma composition in full-disk observations of the Sun is related to the evolution of coronal magnetic field activity. Our observations therefore introduce an uncertain...
The Sun is the late-type star we can study with the highest level of detail. In the interpretation o...
Aims. Chemical abundances in solar-type stars are still a much debated topic in many respe...
Context. While we have ample evidence of stellar analogues to the solar activity cycle for chromosph...
International audienceThe elemental composition in the coronae of low-activity solar-like stars appe...
Elemental abundance effects in active coronae have eluded our understanding for almost three decades...
Coronal elemental abundances, as compared with abundances in the solar wind and solar energetic part...
The chemical composition of the solar corona is different from that of the solar photosphere, with t...
We study X-ray-synthesized spectra of solar regions as templates to interpret analogous stellar spec...
Elemental abundance effects in active coronae have eluded our understanding for almost three decades...
The solar wind ionic charge composition is a powerful tool to distinguish between the slow wind and ...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/95110/1/grl15245.pd
The chemical composition of solar and stellar atmospheres differs from the composition of their phot...
The elemental composition of the Sun's hot atmosphere, the corona, shows a distinctive pattern that ...
Abstract. Coronal elemental abundances, as compared with abundances in the solar wind and solar ener...
Context. As the solar wind propagates through the heliosphere, dynamical processes irreversibly eras...
The Sun is the late-type star we can study with the highest level of detail. In the interpretation o...
Aims. Chemical abundances in solar-type stars are still a much debated topic in many respe...
Context. While we have ample evidence of stellar analogues to the solar activity cycle for chromosph...
International audienceThe elemental composition in the coronae of low-activity solar-like stars appe...
Elemental abundance effects in active coronae have eluded our understanding for almost three decades...
Coronal elemental abundances, as compared with abundances in the solar wind and solar energetic part...
The chemical composition of the solar corona is different from that of the solar photosphere, with t...
We study X-ray-synthesized spectra of solar regions as templates to interpret analogous stellar spec...
Elemental abundance effects in active coronae have eluded our understanding for almost three decades...
The solar wind ionic charge composition is a powerful tool to distinguish between the slow wind and ...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/95110/1/grl15245.pd
The chemical composition of solar and stellar atmospheres differs from the composition of their phot...
The elemental composition of the Sun's hot atmosphere, the corona, shows a distinctive pattern that ...
Abstract. Coronal elemental abundances, as compared with abundances in the solar wind and solar ener...
Context. As the solar wind propagates through the heliosphere, dynamical processes irreversibly eras...
The Sun is the late-type star we can study with the highest level of detail. In the interpretation o...
Aims. Chemical abundances in solar-type stars are still a much debated topic in many respe...
Context. While we have ample evidence of stellar analogues to the solar activity cycle for chromosph...