We propose a unified interpretation for persistent coronal outflows and metric radio noise storms, two phenomena typically observed in association with quiescent solar active regions. Our interpretation is based on multi-wavelength observations of two such regions as they crossed the meridian in May and July 2007. For both regions, we observe a persistent pattern of blue-shifted coronal emission in high-temperature lines with Hinode/EIS, and a radio noise storm with the Nançay Radioheliograph. The observations are supplemented by potential and linear force-free extrapolations of the photospheric magnetic field over large computational boxes, and by a detailed analysis of the coronal magnetic field topology. We find true separatrices in the ...
Context. Upflows at the edges of active regions — called ‘AR outflows’, are studied using multi-inst...
Context. Upflows in the corona are of importance, as they may contribute to the solar wind. There ha...
Context. We study upflows at the edges of active regions, called AR outflows, using multi-instrument...
International audienceWe propose a unified interpretation for persistent coronal outflows and metric...
International audienceWe propose a unified interpretation for persistent coronal outflows and metric...
Active regions are thought to be one contributor to the slow solar wind. Upflows in EUV coronal spec...
Persistent plasma upflows were observed with Hinode?s EUV Imaging Spectrometer (EIS) at the edges of...
International audienceOutflows of plasma at the edges of active regions surrounded by quiet Sun are ...
Context. Coronal mass ejections (CMEs) are large eruptions of magnetised plasma from the Sun that ar...
International audienceOutflows of plasma at the edges of active regions surrounded by quiet Sun are ...
Context. Coronal mass ejections (CMEs) are large eruptions of magnetised plasma from the Sun that ar...
Context. Some of the most prominent sources for particle acceleration in our Solar System are large ...
Context. Some of the most prominent sources for particle acceleration in our Solar System are large ...
Context. Some of the most prominent sources for particle acceleration in our Solar System are large ...
During 2-18 January 2008 a pair of low-latitude opposite-polarity coronal holes (CHs) were observed ...
Context. Upflows at the edges of active regions — called ‘AR outflows’, are studied using multi-inst...
Context. Upflows in the corona are of importance, as they may contribute to the solar wind. There ha...
Context. We study upflows at the edges of active regions, called AR outflows, using multi-instrument...
International audienceWe propose a unified interpretation for persistent coronal outflows and metric...
International audienceWe propose a unified interpretation for persistent coronal outflows and metric...
Active regions are thought to be one contributor to the slow solar wind. Upflows in EUV coronal spec...
Persistent plasma upflows were observed with Hinode?s EUV Imaging Spectrometer (EIS) at the edges of...
International audienceOutflows of plasma at the edges of active regions surrounded by quiet Sun are ...
Context. Coronal mass ejections (CMEs) are large eruptions of magnetised plasma from the Sun that ar...
International audienceOutflows of plasma at the edges of active regions surrounded by quiet Sun are ...
Context. Coronal mass ejections (CMEs) are large eruptions of magnetised plasma from the Sun that ar...
Context. Some of the most prominent sources for particle acceleration in our Solar System are large ...
Context. Some of the most prominent sources for particle acceleration in our Solar System are large ...
Context. Some of the most prominent sources for particle acceleration in our Solar System are large ...
During 2-18 January 2008 a pair of low-latitude opposite-polarity coronal holes (CHs) were observed ...
Context. Upflows at the edges of active regions — called ‘AR outflows’, are studied using multi-inst...
Context. Upflows in the corona are of importance, as they may contribute to the solar wind. There ha...
Context. We study upflows at the edges of active regions, called AR outflows, using multi-instrument...