Aims. We performed a systematic study of 12 active regions (ARs) with a broad range of areas, magnetic fluxes, and associated solar activity in order to determine whether there are upflows present at the AR boundaries and, if these upflows exist, whether there is a high-speed asymmetric blue wing component present in them. Methods. To identify the presence and locations of the AR upflows, we derive relative Doppler velocity maps by fitting a Gaussian function to Hinode/EIS Fe XII 192.394 Å line profiles. To determine whether there is a high-speed asymmetric component present in the AR upflows, we fit a double Gaussian function to the Fe XII 192.394 Å mean spectrum that is computed in a region of interest situated in the AR upflows. Results....
Context. It has already been established that the solar wind may originate at the edges of active re...
Context. Solar active regions are associated with Evershed outflows in sunspot penumbrae, moat outfl...
This Open Access article is licensed under a Creative Commons Attribution 4.0 International License,...
Plasma upflows have been detected in active regions using Doppler velocity maps. The origin and natu...
Plasma upflows have been detected in active regions using Doppler velocity maps. The origin and natu...
Context. We study upflows at the edges of active regions, called AR outflows, using multi-instrument...
Context. We study upflows at the edges of active regions, called AR outflows, using multi-instrument...
Context. We study upflows at the edges of active regions, called AR outflows, using multi-instrument...
Plasma upflows have been detected in active regions using Doppler velocity maps. The origin and natu...
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...
Active regions are thought to be one contributor to the slow solar wind. Upflows in EUV coronal spec...
We analyze the evolution of Fe xii coronal plasma upflows from the edges of ten active regions (ARs)...
The formation of the slow solar wind has been debated for many years. In this Letter we show evidenc...
Context. It has already been established that the solar wind may originate at the edges of active re...
Context. It has already been established that the solar wind may originate at the edges of active re...
Context. Solar active regions are associated with Evershed outflows in sunspot penumbrae, moat outfl...
This Open Access article is licensed under a Creative Commons Attribution 4.0 International License,...
Plasma upflows have been detected in active regions using Doppler velocity maps. The origin and natu...
Plasma upflows have been detected in active regions using Doppler velocity maps. The origin and natu...
Context. We study upflows at the edges of active regions, called AR outflows, using multi-instrument...
Context. We study upflows at the edges of active regions, called AR outflows, using multi-instrument...
Context. We study upflows at the edges of active regions, called AR outflows, using multi-instrument...
Plasma upflows have been detected in active regions using Doppler velocity maps. The origin and natu...
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...
Active regions are thought to be one contributor to the slow solar wind. Upflows in EUV coronal spec...
We analyze the evolution of Fe xii coronal plasma upflows from the edges of ten active regions (ARs)...
The formation of the slow solar wind has been debated for many years. In this Letter we show evidenc...
Context. It has already been established that the solar wind may originate at the edges of active re...
Context. It has already been established that the solar wind may originate at the edges of active re...
Context. Solar active regions are associated with Evershed outflows in sunspot penumbrae, moat outfl...
This Open Access article is licensed under a Creative Commons Attribution 4.0 International License,...