Is null-point reconnection important for solar flux emergence?
arXiv:0910.0368 · doi:10.1007/s11207-009-9458-y
Abstract
The role of null-point reconnection in a 3D numerical MHD model of solar emerging flux is investigated. The model consists of a twisted magnetic flux tube rising through a stratified convection zone and atmosphere to interact and reconnect with a horizontal overlying magnetic field in the atmosphere. Null points appear as the reconnection begins and persist throughout the rest of the emergence, where they can be found mostly in the model photosphere and transition region, forming two loose clusters on either side of the emerging flux tube. Up to 26 nulls are present at any one time, and tracking in time shows that there is a total of 305 overall, despite the initial simplicity of the magnetic field configuration. We find evidence for the reality of the nulls in terms of their methods of creation and destruction, their balance of signs, their long lifetimes, and their geometrical stability. We then show that due to the low parallel electric fields associated with the nulls, null-point reconnection is not the main type of magnetic reconnection involved in the interaction of the newly emerged flux with the overlying field. However, the large number of nulls implies that the topological structure of the magnetic field must be very complex and the importance of reconnection along separators or separatrix surfaces for flux emergence cannot be ruled out.
26 pages, 12 figures. Added one reference
References in corpus (13)
- Generalized Squashing Factors for Covariant Description of Magnetic Connectivity in the Solar Corona
- Magnetic flux emergence in granular convection: Radiative MHD simulations and observational signatures
- Twisted flux tube emergence from the convection zone to the corona
- Magnetic Pinching of Hyperbolic Flux Tubes: I. Basic Estimations
- A trilinear method for finding null points in a 3D vector space
- Current amplification and magnetic reconnection at a 3D null point. I - Physical characteristics
- The Three-dimensional Evolution of Rising, Twisted Magnetic Flux Tubes in a Gravitationally Stratified Model Convection Zone
- The Number Of Magnetic Null Points In The Quiet Sun Corona
- The effect of the relative orientation between the coronal field and new emerging flux: I Global Properties
- A three-dimensional study of reconnection, current sheets and jets resulting from magnetic flux emergence in the Sun
- A new view of quiet-Sun topology from Hinode/SOT
- Magnetohydrodynamic evolution of magnetic skeletons
- The impact of meridional circulation on stellar butterfly diagrams and polar caps
Cited by in corpus (6)
- Chromospheric Jet and Growing "Loop" Observed by Hinode: New Evidence of Fan-Spine Magnetic Topology Resulting From Flux Emergence
- Solar Particle Acceleration at Reconnecting 3D Null Points
- On magnetic reconnection and flux rope topology in solar flux emergence
- Is Magnetic Topology Important for Heating the Solar Atmosphere?
- Effects of Fieldline Topology on Energy Propagation in the Corona
- On the importance of separators as sites of 3D magnetic reconnection