Context. Solar active region (AR) 12673 in 2017 September produced the two largest flares in Solar Cycle 24: the X9.3 flare on September 6 and the X8.2 flare on September 10. Aims. We attempt to investigate the evolutions of the two large flares and their associated complex magnetic system in detail. Methods. Combining observations from the Solar Dynamics Observatory and results of nonlinear force-free field (NLFFF) modeling, we identify various magnetic structures in the AR core region and examine the evolution of these structures during the flares. Results. Aided by the NLFFF modeling, we identify a double-decker flux rope configuration above the polarity inversion line (PIL) in the AR core region. The north ends of these two flux ropes w...
© 2014. The American Astronomical Society. All rights reserved.. We describe the evolution and the m...
How filaments form and erupt are topics about which solar researchers have wondered for more than a ...
Aims. We aim to investigate the configuration of a complex flux rope above the δ sunspot region in t...
Context. Solar active region (AR) 12673 in 2017 September produced the two largest flares in Solar C...
Solar eruptions are often generated as a result of the complex magnetic environment in solar active ...
Solar eruptions are often generated as a result of the complex magnetic environment in solar active ...
Context. The Sun is very quiet with less sunspots and activity since the beginning of solar cycle 24...
(Received???; accepted???) The goal of this paper is to understand the drivers, configurations, and ...
Context. Erupting magnetic flux ropes (MFRs) are believed to play a crucial role in producing solar ...
Context. Erupting magnetic flux ropes (MFRs) are believed to play a crucial role in producing solar ...
Solar active region (AR) 12673 produced 4 X-class, 27 M-class, and numerous lower-class flares durin...
Context. Erupting magnetic flux ropes (MFRs) are believed to play a crucial role in producing solar ...
Solar active region (AR) 12673 produced 4 X-class, 27 M-class, and numerous lower-class flares durin...
An eruption event launched from solar active region (AR) NOAA 11719 is investigated based on coronal...
We studied the temporal evolution of the magnetic topology of the active region (AR) 11158 based on ...
© 2014. The American Astronomical Society. All rights reserved.. We describe the evolution and the m...
How filaments form and erupt are topics about which solar researchers have wondered for more than a ...
Aims. We aim to investigate the configuration of a complex flux rope above the δ sunspot region in t...
Context. Solar active region (AR) 12673 in 2017 September produced the two largest flares in Solar C...
Solar eruptions are often generated as a result of the complex magnetic environment in solar active ...
Solar eruptions are often generated as a result of the complex magnetic environment in solar active ...
Context. The Sun is very quiet with less sunspots and activity since the beginning of solar cycle 24...
(Received???; accepted???) The goal of this paper is to understand the drivers, configurations, and ...
Context. Erupting magnetic flux ropes (MFRs) are believed to play a crucial role in producing solar ...
Context. Erupting magnetic flux ropes (MFRs) are believed to play a crucial role in producing solar ...
Solar active region (AR) 12673 produced 4 X-class, 27 M-class, and numerous lower-class flares durin...
Context. Erupting magnetic flux ropes (MFRs) are believed to play a crucial role in producing solar ...
Solar active region (AR) 12673 produced 4 X-class, 27 M-class, and numerous lower-class flares durin...
An eruption event launched from solar active region (AR) NOAA 11719 is investigated based on coronal...
We studied the temporal evolution of the magnetic topology of the active region (AR) 11158 based on ...
© 2014. The American Astronomical Society. All rights reserved.. We describe the evolution and the m...
How filaments form and erupt are topics about which solar researchers have wondered for more than a ...
Aims. We aim to investigate the configuration of a complex flux rope above the δ sunspot region in t...