Context. Large-scale solar eruptions significantly affect space weather and damage space-based human infrastructures. It is necessary to predict large-scale solar eruptions; it will enable us to protect the vulnerable infrastructures of our modern society. Aims. We investigate the difference between flaring and nonflaring active regions. We also investigate whether it is possible to forecast a solar flare. Methods. We used photospheric vector magnetogram data from the Solar Dynamic Observatory’s Helioseismic Magnetic Imager to study the time evolution of photospheric magnetic parameters on the solar surface. We built a database of flaring and nonflaring active regions observed on the solar surface from 2010 to 2017. We trained a machine-lea...
We study the predictive capabilities of magnetic-feature properties (MF) gener- ated by the Solar M...
Solar flares emanate from solar active regions hosting complex and strong bipolar magnetic fluxes. E...
Solar flares emanate from solar active regions hosting complex and strong bipolar magnetic fluxes. E...
International audienceContext. Large-scale solar eruptions significantly affect space weather and da...
International audienceContext. Large-scale solar eruptions significantly affect space weather and da...
International audienceContext. Large-scale solar eruptions significantly affect space weather and da...
From a large database of (1) 40,000 SOHO/MDI line-of-sight magnetograms covering the passage of 1300...
Space weather has become an international issue due to the catastrophic impact it can have on modern...
Context. Solar flare prediction models normally depend on properties of active regions, such as suns...
Context. Solar flare prediction models normally depend on properties of active regions, such as suns...
Context. Solar flare prediction models normally depend on properties of active regions, such as suns...
Solar active regions are areas on the Sun\u27s surface that have especially strong magnetic fields. ...
We study the predictive capabilities of magnetic-feature properties (MF) gener- ated by the Solar M...
Solar flares emanate from solar active regions hosting complex and strong bipolar magnetic fluxes. E...
Solar flares emanate from solar active regions hosting complex and strong bipolar magnetic fluxes. E...
We study the predictive capabilities of magnetic-feature properties (MF) gener- ated by the Solar M...
Solar flares emanate from solar active regions hosting complex and strong bipolar magnetic fluxes. E...
Solar flares emanate from solar active regions hosting complex and strong bipolar magnetic fluxes. E...
International audienceContext. Large-scale solar eruptions significantly affect space weather and da...
International audienceContext. Large-scale solar eruptions significantly affect space weather and da...
International audienceContext. Large-scale solar eruptions significantly affect space weather and da...
From a large database of (1) 40,000 SOHO/MDI line-of-sight magnetograms covering the passage of 1300...
Space weather has become an international issue due to the catastrophic impact it can have on modern...
Context. Solar flare prediction models normally depend on properties of active regions, such as suns...
Context. Solar flare prediction models normally depend on properties of active regions, such as suns...
Context. Solar flare prediction models normally depend on properties of active regions, such as suns...
Solar active regions are areas on the Sun\u27s surface that have especially strong magnetic fields. ...
We study the predictive capabilities of magnetic-feature properties (MF) gener- ated by the Solar M...
Solar flares emanate from solar active regions hosting complex and strong bipolar magnetic fluxes. E...
Solar flares emanate from solar active regions hosting complex and strong bipolar magnetic fluxes. E...
We study the predictive capabilities of magnetic-feature properties (MF) gener- ated by the Solar M...
Solar flares emanate from solar active regions hosting complex and strong bipolar magnetic fluxes. E...
Solar flares emanate from solar active regions hosting complex and strong bipolar magnetic fluxes. E...