We present for the first time the evolution of the photospheric electric currents during an eruptive X-class flare, accurately predicted by the standard three-dimensional (3D) flare model. We analyze this evolution for the 2011 February 15 flare using Helioseismic and Magnetic Imager/Solar Dynamics Observatory magnetic observations and find that localized currents in J-shaped ribbons increase to double their pre-flare intensity. Our 3D flare model, developed with the OHM code, suggests that these current ribbons, which develop at the location of extreme ultraviolet brightenings seen with Atmospheric Imaging Assembly imagery, are driven by the collapse of the flare's coronal current layer. These findings of increased currents restricted in l...
Context. The standard CSHKP model for eruptive flares is two-dimensional. Yet observational interpre...
Context. The standard CSHKP model for eruptive flares is two-dimensional. Yet observational interpre...
Context. The standard CSHKP model for eruptive flares is two-dimensional. Yet observational interpre...
We present for the first time the evolution of the photospheric electric currents during an eruptive...
Context. The standard model for eruptive flares has been extended to three dimensions (3D) in the pa...
Context. The standard model for eruptive flares has been extended to three dimensions (3D) in the pa...
Context. The standard model for eruptive flares has been extended to three dimensions (3D) in the pa...
Context. The standard model for eruptive flares has been extended to three dimensions (3D)...
International audienceElectric currents play a critical role in the triggering of solar flares and t...
International audienceElectric currents play a critical role in the triggering of solar flares and t...
International audienceElectric currents play a critical role in the triggering of solar flares and t...
Context. The standard CSHKP model for eruptive flares is two-dimensional. Yet observational interpre...
Context. The standard CSHKP model for eruptive flares is two-dimensional. Yet observational interpre...
Context. The standard CSHKP model for eruptive flares is two-dimensional. Yet observational interpre...
Context. The standard CSHKP model for eruptive flares is two-dimensional. Yet observational interpre...
Context. The standard CSHKP model for eruptive flares is two-dimensional. Yet observational interpre...
Context. The standard CSHKP model for eruptive flares is two-dimensional. Yet observational interpre...
Context. The standard CSHKP model for eruptive flares is two-dimensional. Yet observational interpre...
We present for the first time the evolution of the photospheric electric currents during an eruptive...
Context. The standard model for eruptive flares has been extended to three dimensions (3D) in the pa...
Context. The standard model for eruptive flares has been extended to three dimensions (3D) in the pa...
Context. The standard model for eruptive flares has been extended to three dimensions (3D) in the pa...
Context. The standard model for eruptive flares has been extended to three dimensions (3D)...
International audienceElectric currents play a critical role in the triggering of solar flares and t...
International audienceElectric currents play a critical role in the triggering of solar flares and t...
International audienceElectric currents play a critical role in the triggering of solar flares and t...
Context. The standard CSHKP model for eruptive flares is two-dimensional. Yet observational interpre...
Context. The standard CSHKP model for eruptive flares is two-dimensional. Yet observational interpre...
Context. The standard CSHKP model for eruptive flares is two-dimensional. Yet observational interpre...
Context. The standard CSHKP model for eruptive flares is two-dimensional. Yet observational interpre...
Context. The standard CSHKP model for eruptive flares is two-dimensional. Yet observational interpre...
Context. The standard CSHKP model for eruptive flares is two-dimensional. Yet observational interpre...
Context. The standard CSHKP model for eruptive flares is two-dimensional. Yet observational interpre...