This paper aims to track the 3D evolution of a full halo CME on 2011 June 21. The CME results from a non-radial eruption of a filament-carrying flux rope in NOAA active region 11236. The eruption is observed in EUV wavelengths by the EUVI on board the ahead and behind STEREO spacecrafts and the AIA on board SDO. The CME is observed by the COR1 coronagraph on board STEREO and the C2 coronagraph on board SOHO/LASCO. The revised cone model is slightly modified, with the top of the cone becoming a sphere, which is internally tangent to the legs. Using the multi-point observations, the cone model is applied to derive the morphological and kinematic properties of the CME. The cone shape fits nicely with the CME observed by EUVI and COR1 on board ...
11 pages, 9 figuresAims. Coronal mass ejections or CMEs are large dynamical solar-corona events. The...
We are investigating the geometric and kinematic characteristics of interplanetary coronal mass ejec...
Context. Coronal mass ejections (CMEs) are large-scale eruptions coming from the Sun and transiting ...
Aims. This paper aims to track the three-dimensional (3D) evolution of a full halo coronal mass ejec...
Context. The traditional cone models achieve great success in studying the geometrical and kinematic...
Due to projection effects, coronagraphic observations cannot uniquely determine parameters relevant ...
[1] Many broadside coronal mass ejections (CMEs) propagate almost radially beyond the first couple o...
We investigated the substantial restructuring of the outer solar corona in the aftermath of the halo...
Coronal Mass Ejections (CMEs) are outbursts of coronal plasma bound in magnetic structures that are ...
Aims. The diffuse morphology and transient nature of coronal mass ejections (CMEs) make them difficu...
Coronal mass ejections (CMEs) are large scale eruptions observed close to the Sun. They are travelli...
Context. We use forward modelling on multi-viewpoint coronagraph observations to estimate the 3-dime...
International audienceContext: Coronal mass ejections (CMEs) are large scale eruptions observed clos...
Context. A few days before the first perihelion of the Solar Orbiter nominal mission, which occurred...
Context. Coronal dimmings are localized regions of reduced emission in the extreme-ultraviolet (EUV)...
11 pages, 9 figuresAims. Coronal mass ejections or CMEs are large dynamical solar-corona events. The...
We are investigating the geometric and kinematic characteristics of interplanetary coronal mass ejec...
Context. Coronal mass ejections (CMEs) are large-scale eruptions coming from the Sun and transiting ...
Aims. This paper aims to track the three-dimensional (3D) evolution of a full halo coronal mass ejec...
Context. The traditional cone models achieve great success in studying the geometrical and kinematic...
Due to projection effects, coronagraphic observations cannot uniquely determine parameters relevant ...
[1] Many broadside coronal mass ejections (CMEs) propagate almost radially beyond the first couple o...
We investigated the substantial restructuring of the outer solar corona in the aftermath of the halo...
Coronal Mass Ejections (CMEs) are outbursts of coronal plasma bound in magnetic structures that are ...
Aims. The diffuse morphology and transient nature of coronal mass ejections (CMEs) make them difficu...
Coronal mass ejections (CMEs) are large scale eruptions observed close to the Sun. They are travelli...
Context. We use forward modelling on multi-viewpoint coronagraph observations to estimate the 3-dime...
International audienceContext: Coronal mass ejections (CMEs) are large scale eruptions observed clos...
Context. A few days before the first perihelion of the Solar Orbiter nominal mission, which occurred...
Context. Coronal dimmings are localized regions of reduced emission in the extreme-ultraviolet (EUV)...
11 pages, 9 figuresAims. Coronal mass ejections or CMEs are large dynamical solar-corona events. The...
We are investigating the geometric and kinematic characteristics of interplanetary coronal mass ejec...
Context. Coronal mass ejections (CMEs) are large-scale eruptions coming from the Sun and transiting ...