During 2-18 January 2008 a pair of low-latitude opposite-polarity coronal holes (CHs) were observed on the Sun with two active regions (ARs) and the heliospheric plasma sheet located between them. We use the Hinode/EUV Imaging Spectrometer (EIS) to locate AR-related outflows and measure their velocities. Solar-Terrestrial Relations Observatory (STEREO) imaging is also employed, as are the Advanced Composition Explorer (ACE) in-situ observations, to assess the resulting impacts on the solar wind (SW) properties. Magnetic-field extrapolations of the two ARs confirm that AR plasma outflows observed with EIS are co-spatial with quasi-separatrix layer locations, including the separatrix of a null point. Global potential-field source-surface mode...
According to current models, solar closed-field active regions are isolated from contributing direct...
According to current models, solar closed-field active regions are isolated from contributing direct...
We analyze the evolution of Fe xii coronal plasma upflows from the edges of ten active regions (ARs)...
During 2-18 January 2008 a pair of low-latitude opposite-polarity coronal holes (CHs) were observed ...
Multi-wavelength observations from various solar missions have revealed the dynamic nature of the s...
Hinode´s EUV Imaging Spectrometer (EIS) has discovered ubiquitous outflows of a few to 50 km s-1 fro...
Plasma upflows have been detected in active regions using Doppler velocity maps. The origin and natu...
The formation of the slow solar wind has been debated for many years. In this Letter we show evidenc...
International audienceEstablishing the sources of the fast and slow solar wind is important for unde...
International audienceEstablishing the sources of the fast and slow solar wind is important for unde...
Context. Upflows in the corona are of importance, as they may contribute to the solar wind. There ha...
Previous studies of the source regions of solar wind sampled by ACE and Ulysses showed that some sol...
Active regions (ARs) are a candidate source of the slow solar wind (SW), the origins of which are a ...
Active regions (ARs) are a candidate source of the slow solar wind (SW), the origins of which are a ...
Seeking to establish whether active region upflow material contributes to the slow solar wind, we ex...
According to current models, solar closed-field active regions are isolated from contributing direct...
According to current models, solar closed-field active regions are isolated from contributing direct...
We analyze the evolution of Fe xii coronal plasma upflows from the edges of ten active regions (ARs)...
During 2-18 January 2008 a pair of low-latitude opposite-polarity coronal holes (CHs) were observed ...
Multi-wavelength observations from various solar missions have revealed the dynamic nature of the s...
Hinode´s EUV Imaging Spectrometer (EIS) has discovered ubiquitous outflows of a few to 50 km s-1 fro...
Plasma upflows have been detected in active regions using Doppler velocity maps. The origin and natu...
The formation of the slow solar wind has been debated for many years. In this Letter we show evidenc...
International audienceEstablishing the sources of the fast and slow solar wind is important for unde...
International audienceEstablishing the sources of the fast and slow solar wind is important for unde...
Context. Upflows in the corona are of importance, as they may contribute to the solar wind. There ha...
Previous studies of the source regions of solar wind sampled by ACE and Ulysses showed that some sol...
Active regions (ARs) are a candidate source of the slow solar wind (SW), the origins of which are a ...
Active regions (ARs) are a candidate source of the slow solar wind (SW), the origins of which are a ...
Seeking to establish whether active region upflow material contributes to the slow solar wind, we ex...
According to current models, solar closed-field active regions are isolated from contributing direct...
According to current models, solar closed-field active regions are isolated from contributing direct...
We analyze the evolution of Fe xii coronal plasma upflows from the edges of ten active regions (ARs)...