Reconnection of a kinking flux rope triggering the ejection of a microwave and hard X-ray source. II. Numerical Modeling
arXiv:1007.2147 · doi:10.1007/s11207-010-9609-1
Abstract
Numerical simulations of the helical () kink instability of an arched, line-tied flux rope demonstrate that the helical deformation enforces reconnection between the legs of the rope if modes with two helical turns are dominant as a result of high initial twist in the range . Such reconnection is complex, involving also the ambient field. In addition to breaking up the original rope, it can form a new, low-lying, less twisted flux rope. The new flux rope is pushed downward by the reconnection outflow, which typically forces it to break as well by reconnecting with the ambient field. The top part of the original rope, largely rooted in the sources of the ambient flux after the break-up, can fully erupt or be halted at low heights, producing a "failed eruption." The helical current sheet associated with the instability is squeezed between the approaching legs, temporarily forming a double current sheet. The leg-leg reconnection proceeds at a high rate, producing sufficiently strong electric fields that it would be able to accelerate particles. It may also form plasmoids, or plasmoid-like structures, which trap energetic particles and propagate out of the reconnection region up to the top of the erupting flux rope along the helical current sheet. The kinking of a highly twisted flux rope involving leg-leg reconnection can explain key features of an eruptive but partially occulted solar flare on 18 April 2001, which ejected a relatively compact hard X-ray and microwave source and was associated with a fast coronal mass ejection.
Solar Physics, in press
References in corpus (7)
- Torus instability
- Ideal kink instability of a magnetic loop equilibrium
- Non-linear force-free field modeling of a solar active region around the time of a major flare and coronal mass ejection
- Formation of current sheets and sigmoidal structure by the kink instability of a magnetic loop
- Observations and modeling of the early acceleration phase of erupting filaments involved in coronal mass ejections
- Testing magnetofrictional extrapolation with the Titov-Démoulin model of solar active regions
- Reconnection of a kinking flux rope triggering the ejection of a microwave and hard X-ray source. I. Observations and Interpretation
Cited by in corpus (38)
- Structure, Stability, and Evolution of Magnetic Flux Ropes from the Perspective of Magnetic Twist
- Sympathetic Partial and Full Filament Eruptions Observed in One Solar Breakout Event
- Sun-to-Earth MHD Simulation of the 14 July 2000 "Bastille Day" Eruption
- Solar filament eruptions and their physical role in triggering Coronal Mass Ejections
- Spontaneous current-layer fragmentation and cascading reconnection in solar flares: I. Model and analysis
- Slow Rise and Partial Eruption of a Double-Decker Filament. I Observations and Interpretation
- MHD Simulation of a Sigmoid Eruption of Active Region 11283
- A solar tornado observed by AIA/SDO: Rotational flow and evolution of magnetic helicity in a prominence and cavity
- Magnetic Flux Ropes in the Solar Corona: Structure and Evolution toward Eruption
- Eruption of a multi-flux-rope system in solar active region 12673 leading to the two largest flares in Solar Cycle 24
- Particle acceleration and transport in reconnecting twisted loops in a stratified atmosphere
- On the twists of interplanetary magnetic flux ropes observed at 1 AU
- Initiation of CME and Associated Flare Caused by Helical Kink Instability Observed by SDO/AIA
- A Parametric Study of Erupting Flux Rope Rotation. Modeling the "Cartwheel CME" on 9 April 2008
- Magnetohydrodynamic Simulation of the X9.3 Flare on 2017 September 6: Evolving Magnetic Topology
- Helical Kink Instability in a Confined Solar Eruption
- Why torus-unstable solar filaments experience failed eruption?
- Triggering mechanism and material transfer of a failed solar filament eruption
- Origin of Macrospicule and Jet in Polar Corona by A Small-scale Kinked Flux-Tube
- Reconnection of a kinking flux rope triggering the ejection of a microwave and hard X-ray source. I. Observations and Interpretation
- Unambiguous Evidence of Filament Splitting-Induced Partial Eruptions
- Evolution of A Magnetic Flux Rope toward Eruption
- Variations in emission from episodic plasmoid ejecta around black holes
- Plasmoids, Flows, and Jets During Magnetic Reconnection in a Failed Solar Eruption
- Multiwavelength observation of a large-scale flux rope eruption above kinked mini-filament
- The Evolution of Writhe in Kink-Unstable Flux Ropes and Erupting Filaments
- Modifications of thick-target model: re-acceleration of electron beams by static and stochastic electric fields
- Dynamics evolution of a solar active-region filament from quasi-static state to eruption: rolling motion, untwisting motion, material transfer, and chirality
- Drifting Pulsation Structure at the Very Beginning of the 2017 September 10 Limb Flare
- Kink Oscillation of a Flux Rope During a Failed Solar Eruption
- Helical Twisting Number and Braiding Linkage Number of Solar Coronal Loops
- Global Energetics of Solar Flares. XII. Energy Scaling Laws
- The 2017 September 6 Flare: Radio Bursts and Pulsations in the 22-5000 MHz Range and Associated Phenomena
- A Hot Cusp-Shaped Confined Solar Flare
- Filament Leg--Leg Reconnection as a Source of Prominent Supra-Arcade Downflows
- Solar Eruption and Local Magnetic Parameters
- The initiation of a solar streamer blowout coronal mass ejection arising from the streamer flank
- Multi-wavelength and Dual-perspective Observations of Eruption and Untwisting of Two Homologous Magnetic Flux Ropes