Why are flare ribbons associated with the spines of magnetic null points generically elongated?
arXiv:1605.05704 · doi:10.1007/s11207-016-0919-9
Abstract
Coronal magnetic null points exist in abundance as demonstrated by extrapolations of the coronal field, and have been inferred to be important for a broad range of energetic events. These null points and their associated separatrix and spine field lines represent discontinuities of the field line mapping, making them preferential locations for reconnection. This field line mapping also exhibits strong gradients adjacent to the separatrix (fan) and spine field lines, that can be analysed using the `squashing factor', . In this paper we make a detailed analysis of the distribution of in the presence of magnetic nulls. While is formally infinite on both the spine and fan of the null, the decay of away from these structures is shown in general to depend strongly on the null-point structure. For the generic case of a non-radially-symmetric null, decays most slowly away from the spine/fan in the direction in which increases most slowly. In particular, this demonstrates that the extended, elliptical high- halo around the spine footpoints observed by Masson et al. (Astrophys. J., 700, 559, 2009) is a generic feature. This extension of the halos around the spine/fan footpoints is important for diagnosing the regions of the photosphere that are magnetically connected to any current layer that forms at the null. In light of this, we discuss how our results can be used to interpret the geometry of observed flare ribbons in `circular ribbon flares', in which typically a coronal null is implicated. We conclude that both the physics in the vicinity of the null and how this is related to the extension of away from the spine/fan can be used in tandem to understand observational signatures of reconnection at coronal null points.
Pre-print version of article accepted for publication in Solar Physics
References in corpus (16)
- Generalized Squashing Factors for Covariant Description of Magnetic Connectivity in the Solar Corona
- Current amplification and magnetic reconnection at a 3D null point. I - Physical characteristics
- The Relation between Solar Eruption Topologies and Observed Flare Features I: Flare Ribbons
- Current sheet formation and non-ideal behaviour at three-dimensional magnetic null points
- On the 2012 October 23 circular ribbon flare: emission features and magnetic topology
- Non-linear Tearing of 3D Null Point Current Sheets
- A new view of quiet-Sun topology from Hinode/SOT
- A Circular-ribbon Solar Flare Following an Asymmetric Filament Eruption
- The Solar Cycle Variation of Topological Structures in the Global Solar Corona
- Slipping Magnetic Reconnection Triggering a Solar Eruption of a Triangle-flag Flux Rope
- The magnetic field topology associated to two M flares
- Three-Year Global Survey of Coronal Null Points from Potential-Field-Source-Surface (PFSS) Modeling and Solar Dynamics Observatory (SDO) Observations
- Particle acceleration by fluctuating electric fields at a magnetic field null point
- Dynamical Relaxation of Coronal Magnetic Fields. III. 3D Spiral Nulls
- Current singularities in line-tied three-dimensional magnetic fields
- Simulations of 3D Magnetic Merging: Resistive Scalings for Null Point and QSL Reconnection
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- Escape of Flare-accelerated Particles in Solar Eruptive Events
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- A secondary fan-spine magnetic structure in active region 11897
- QSL Squasher: A Fast Quasi-Separatrix Layer Map Calculator
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- Magnetic braids in eruptions of a spiral structure in the solar atmosphere
- Imaging and spectral study on the null point of a fan-spine structure during a solar flare
- Development of a Confined Circular-cum-parallel Ribbon Flare and Associated Pre-flare Activity
- Observation of a 3D magnetic null point
- Three-dimensional Magnetic Reconnection Triggering an X-class Confined Flare in Active Region 12192
- Does Nearby Open Flux Affect the Eruptivity of Solar Active Regions?
- Magnetic reconnections in the presence of three-dimensional magnetic nulls and quasi-separatrix layers
- Comparison of magnetic energy and helicity in coronal jet simulations
- Flare Ribbons Approach Observed by the Interface Region Imaging Spectrograph and the Solar Dynamics Observatory
- Magnetohydrodynamics evolution of three-dimensional magnetic null in NOAA active region 11515 initiated using non-force-free field extrapolation
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