Aims. We study the onset of a solar eruption involving a filament ejection on 2007 May 20. Methods. We observe the filament in Hα images from Hinode/SOT and in EUV with TRACE and STEREO/SECCHI/EUVI. Hinode/XRT images are used to study the eruption in soft X-rays. From spectroscopic data taken with Hinode/EIS we obtain bulk-flow velocities, line profiles, and plasma densities in the onset region. The magnetic field evolution was observed in SoHO/MDI magnetograms. Results. We observed a converging motion between two opposite polarity sunspots that form the primary magnetic polarity inversion line (PIL), along which resides filament material before eruption. Positive-flux magnetic elements, perhaps moving magnetic features (MMF...
Context. In recent years the accumulation of magnetic helicity via emergence of new magnet...
Failed filament eruption remains mysterious on its initiation, magnetic environment, and erupting an...
We investigate whether flux cancellation is responsible for the formation of a very massive filament...
We study a solar eruption of 2007 May 20, in an effort to understand the cause of the eruption's ons...
Solar filaments are magnetic structures often observed in the solar atmosphere and consist of plasma...
International audienceContext. In recent years the accumulation of magnetic helicity via emergence o...
International audienceContext. In recent years the accumulation of magnetic helicity via emergence o...
International audienceContext. In recent years the accumulation of magnetic helicity via emergence o...
Solar eruptions involve the violent disruption of a system of magnetic field. Just how the field is ...
Solar filaments are strands of relatively cool, dense plasma magnetically suspended in the lower den...
Here we report evidence of a large solar filament eruption on 2013, September 29. This smooth erupti...
Here we report evidence of a large solar filament eruption on 2013, September 29. This smooth erupti...
We observe a filament eruption of 23 Jan 2012 using Atmospheric Imaging Array (AIA) data from the So...
Solar eruptions are the most energetic phenomena observed in the solar system observed as flares, co...
Here we report evidence of a large solar filament eruption on 2013, September 29. This smooth erupti...
Context. In recent years the accumulation of magnetic helicity via emergence of new magnet...
Failed filament eruption remains mysterious on its initiation, magnetic environment, and erupting an...
We investigate whether flux cancellation is responsible for the formation of a very massive filament...
We study a solar eruption of 2007 May 20, in an effort to understand the cause of the eruption's ons...
Solar filaments are magnetic structures often observed in the solar atmosphere and consist of plasma...
International audienceContext. In recent years the accumulation of magnetic helicity via emergence o...
International audienceContext. In recent years the accumulation of magnetic helicity via emergence o...
International audienceContext. In recent years the accumulation of magnetic helicity via emergence o...
Solar eruptions involve the violent disruption of a system of magnetic field. Just how the field is ...
Solar filaments are strands of relatively cool, dense plasma magnetically suspended in the lower den...
Here we report evidence of a large solar filament eruption on 2013, September 29. This smooth erupti...
Here we report evidence of a large solar filament eruption on 2013, September 29. This smooth erupti...
We observe a filament eruption of 23 Jan 2012 using Atmospheric Imaging Array (AIA) data from the So...
Solar eruptions are the most energetic phenomena observed in the solar system observed as flares, co...
Here we report evidence of a large solar filament eruption on 2013, September 29. This smooth erupti...
Context. In recent years the accumulation of magnetic helicity via emergence of new magnet...
Failed filament eruption remains mysterious on its initiation, magnetic environment, and erupting an...
We investigate whether flux cancellation is responsible for the formation of a very massive filament...