Buildup of the Magnetic Flux Ropes in Homologous Solar Eruptions
arXiv:2201.06817 · doi:10.3847/1538-4357/ac3f35
Abstract
Homologous coronal mass ejections (CMEs) are an interesting phenomenon, and it is possible to investigate the formation of CMEs by comparing multi-CMEs under a homologous physical condition. AR 11283 had been present on the solar surface for several days when a bipole emerged on 2011 September 4. Its positive polarity collided with the pre-existing negative polarity belonging to a different bipole, producing recurrent solar activities along the polarity inversion line (PIL) between the colliding polarities, namely the so-called collisional PIL (cPIL). Our results show that a large amount of energy and helicity were built up in the form of magnetic flux ropes (MFRs), with recurrent release and accumulation processes. These MFRs were built up along the cPIL. A flux deficit method is adopted and shows that magnetic cancellation happens along the cPIL due to the collisional shearing scenario proposed by Chintzoglou et al. The total amount of canceled flux was 0.710 Mx with an uncertainty of 13.2 within the confidence region of the 30 sun-center distance. The canceled flux amounts to 24 of the total unsigned flux of the bipolar magnetic region. The results show that the magnetic fields beside the cPIL are very sheared, and the average shear angle is above 70 after the collision. The fast expansion of the twist kernels of the MFRs and the continuous eruptive activities are both driven by the collisional shearing process. These results are important for better understanding the buildup process of the MFRs associated with homologous solar eruptions.
Accepted for publication in ApJ. 31 pages, 12 figures
References in corpus (14)
- The Helioseismic and Magnetic Imager (HMI) Vector Magnetic Field Pipeline: SHARPs -- Space-weather HMI Active Region Patches
- The Helioseismic and Magnetic Imager (HMI) Vector Magnetic Field Pipeline: Overview and Performance
- Optimization code with weighting function for the reconstruction of coronal magnetic fields
- Observations of an extreme storm in interplanetary space caused by successive coronal mass ejections
- Tracking Vector Magnetograms with the Magnetic Induction Equation
- Why Is the Great Solar Active Region 12192 Flare-Rich But CME-Poor?
- Emergence of a Helical Flux Rope Under an Active Region Prominence
- Abrupt changes in photospheric magnetic and Lorentz-force vectors during neutral-line flares
- Magnetic helicity estimations in models and observations of the solar magnetic field. Part I: Finite volume methods
- Multiwavelength observations of a partially eruptive filament on 2011 September 8
- Three-dimensional Magnetic Restructuring in Two Homologous Solar Flares in the Seismically Active NOAA AR 11283
- A Comparative Study of 2017 July and 2012 July Complex Eruptions: Are Solar Superstorms "Perfect Storms" in Nature?
- Projection effects in coronal dimmings and associated EUV wave event
- Lorentz Force Evolution Reveals the Energy Buildup Processes during Recurrent Eruptive Solar Flares