Coronal mass ejection initiation: On the nature of the Flux Cancellation Model
arXiv:1005.4669 · doi:10.1088/2041-8205/717/1/L26
Abstract
We consider a three-dimensional bipolar force-free magnetic field with non zero magnetic helicity, occupying a half-space, and study the problem of its evolution driven by an imposed photospheric flux decrease. For this specific setting of the Flux Cancellation Model describing coronal mass ejections occuring in active regions, we address the issues of the physical meaning of flux decrease, of the influence on field evolution of the size of the domain over which this decrease is imposed, and of the existence of an energetic criterion characterizing the possible onset of disruption of the configuration. We show that: (1) The imposed flux disappearance can be interpreted in terms of transport of positive and negative fluxes towards the inversion line, where they get annihilated. (2) For the particular case actually computed, in which the initial state is quite sheared, the formation of a twisted flux rope and the subsequent global disruption of the configuration are obtained when the flux has decreased by only a modest amount over a limited part of the whole active region. (3) The disruption is produced when the magnetic energy becomes of the order of the decreasing energy of a semi-open field, and then before reaching the energy of the associated fully open field. This suggests that the mechanism leading to the disruption is nonequilibrium as in the case where flux is imposed to decrease over the whole region.
In press in ApJ Letters
References in corpus (2)
Cited by in corpus (37)
- Flare-productive active regions
- Photospheric flux cancellation and associated flux rope formation and eruption
- Solar filament eruptions and their physical role in triggering Coronal Mass Ejections
- Prominence and Filament Eruptions Observed by the Solar Dynamics Observatory: Statistical Properties, Kinematics, and Online Catalog
- Magnetohydrodynamic Modeling of the Solar Eruption on 2010 April 8
- Origin and Structures of Solar Eruptions I: Magnetic Flux Rope (Invited Review)
- Numerical Investigation of a Coronal Mass Ejection from an Anemone Active Region: Reconnection and Deflection of the 2005 August 22 Eruption
- Critical Science Plan for the Daniel K. Inouye Solar Telescope (DKIST)
- A Parametric Study of Erupting Flux Rope Rotation. Modeling the "Cartwheel CME" on 9 April 2008
- A model for stealth coronal mass ejections
- Magnetohydrodynamic Simulation of the X2.2 Solar Flare on 2011 February 15: II. Dynamics Connecting the Solar Flare and the Coronal Mass Ejection
- 3D Prominence-hosting Magnetic Configurations: Creating a Helical Magnetic Flux Rope
- Magnetic Structure Producing X- and M-Class Solar Flares in Solar Active Region 11158
- Witnessing tether-cutting reconnection at the onset of a partial eruption
- On the Characteristics of Footpoints of Solar Magnetic Flux Ropes during the Eruption
- The physical mechanisms that initiate and drive solar eruptions
- Sunspot Rotation as a Driver of Major Solar Eruptions in NOAA Active Region 12158
- Non-equilibrium Flux Rope Formation by Confined Flares Preceding a Solar Coronal Mass Ejection
- Flux Accretion and Coronal Mass Ejection Dynamics
- Fine-scale Structures of Flux Ropes Tracked by Erupting Material
- Successive Homologous Coronal Mass Ejections driven by shearing and converging motions in solar active region NOAA 12371
- Very fast helicity injection leading to critically stable state and large eruptive activity in solar active region NOAA 12673
- Exploring Plasma Heating in the Current Sheet Region in a Three-Dimensional Coronal Mass Ejection Simulation
- Magnetic Flux Change and Cancellation Associated with X-class and M-class Flares
- Formation and Eruption of a Small Flux Rope in the Chromosphere Observed by NST, IRIS, and SDO
- Multiwavelength observation of a large-scale flux rope eruption above kinked mini-filament
- Formation of a Magnetic Flux Rope in the Early Emergence Phase of NOAA Active Region 12673
- Eruptive-Impulsive Homologous M-class Flares Associated with Double-Decker Flux Rope Configuration in Mini-Sigmoid of NOAA 12673
- Distinguishing between Flaring and Non-Flaring Active Regions: A Machine Learning Perspective
- A Model of Homologous Confined and Ejective Eruptions Involving Kink Instability and Flux Cancellation
- High-resolution Observations of a Flux Rope with the Interface Region Imaging Spectrograph
- STITCH: A Subgrid-Scale Model for Energy Buildup in the Solar Corona
- Relationship between supergranulation flows, magnetic cancellation and network flares
- Filament Eruption Driving EUV Loop Contraction then Expansion above a Stable Filament
- Untwisting and Disintegration of a Solar Filament Associated with Photospheric Flux Cancellation
- Filament eruption in association with rotational motion near the filament footpoints
- Magnetic clouds in the solar wind: A numerical assessment study of analytical models