Magnetic free energy powers solar flares and coronal mass ejections, and the buildup of magnetic helicity might play a role in the development of unstable structures that subsequently erupt. To better understand the roles of energy and helicity in large flares and eruptions, we have characterized the evolution of magnetic energy and helicity associated with 21 X-class flares from 2010 to 2017. Our sample includes both confined and eruptive events, with 6 and 15 in each category, respectively. Using the Helioseismic and Magnetic Imager vector magnetic field observations from several hours before to several hours after each event, we employ (a) the Differential Affine Velocity Estimator for Vector Magnetograms to determine the photospheric fl...
Aims. We investigate the role of the accumulation of both magnetic helicity and magnetic energy in t...
Context. Flares and coronal mass ejections (CMEs) are solar phenomena that are not yet fully underst...
It is generally believed that eruptive phenomena in the solar atmosphere such as solar flares and co...
Magnetic free energy powers solar flares and coronal mass ejections, and the buildup of magnetic hel...
Free magnetic energy (that is relating to the electric current density) and relative magnetic helici...
Context. In order to better understand the underlying processes and prerequisites for solar activity...
Context. The accumulation of magnetic helicity via emergence of new magnetic flux and/or shearing ph...
International audienceWe compare the coronal magnetic energy and helicity of two solar active region...
To better understand eruptive events in the solar corona, we combine sequences of multi-wavelength o...
To better understand eruptive events in the solar corona, we combine sequences of multi-wavelength o...
Magnetic helicity is a physical parameter used to quantify the complexity of magnetic fields, provid...
11 pages, 3 figures, accepted for publication in ApJWe compare the coronal magnetic energy and helic...
International audienceContext. In September 2017, the largest X-class flare of solar cycle 24 occurr...
Aims. We investigate the role of the accumulation of both magnetic helicity and magnetic energy in t...
Context. Flares and coronal mass ejections (CMEs) are solar phenomena that are not yet fully underst...
It is generally believed that eruptive phenomena in the solar atmosphere such as solar flares and co...
Magnetic free energy powers solar flares and coronal mass ejections, and the buildup of magnetic hel...
Free magnetic energy (that is relating to the electric current density) and relative magnetic helici...
Context. In order to better understand the underlying processes and prerequisites for solar activity...
Context. The accumulation of magnetic helicity via emergence of new magnetic flux and/or shearing ph...
International audienceWe compare the coronal magnetic energy and helicity of two solar active region...
To better understand eruptive events in the solar corona, we combine sequences of multi-wavelength o...
To better understand eruptive events in the solar corona, we combine sequences of multi-wavelength o...
Magnetic helicity is a physical parameter used to quantify the complexity of magnetic fields, provid...
11 pages, 3 figures, accepted for publication in ApJWe compare the coronal magnetic energy and helic...
International audienceContext. In September 2017, the largest X-class flare of solar cycle 24 occurr...
Aims. We investigate the role of the accumulation of both magnetic helicity and magnetic energy in t...
Context. Flares and coronal mass ejections (CMEs) are solar phenomena that are not yet fully underst...
It is generally believed that eruptive phenomena in the solar atmosphere such as solar flares and co...