Light Bridge in a Developing Active Region. II. Numerical Simulation of Flux Emergence and Light Bridge Formation
arXiv:1509.00205 · doi:10.1088/0004-637X/811/2/138
Abstract
Light bridges, the bright structure dividing umbrae in sunspot regions, show various activity events. In Paper I, we reported on analysis of multi-wavelength observations of a light bridge in a developing active region (AR) and concluded that the activity events are caused by magnetic reconnection driven by magnetconvective evolution. The aim of this second paper is to investigate the detailed magnetic and velocity structures and the formation mechanism of light bridges. For this purpose, we analyze numerical simulation data from a radiative magnetohydrodynamics model of an emerging AR. We find that a weakly-magnetized plasma upflow in the near-surface layers of the convection zone is entrained between the emerging magnetic bundles that appear as pores at the solar surface. This convective upflow continuously transports horizontal fields to the surface layer and creates a light bridge structure. Due to the magnetic shear between the horizontal fields of the bridge and the vertical fields of the ambient pores, an elongated cusp-shaped current layer is formed above the bridge, which may be favorable for magnetic reconnection. The striking correspondence between the observational results of Paper I and the numerical results of this paper provides a consistent physical picture of light bridges. The dynamic activity phenomena occur as a natural result of the bridge formation and its convective nature, which has much in common with those of umbral dots and penumbral filaments.
39 pages, 11 figures, 2 tables, accepted for publication in ApJ
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- On the Magnetic and Energy Characteristics of Recurrent Homologous Jets from An Emerging Flux
- Various Local Heating Events in the Earliest Phase of Flux Emergence
- Surge-like oscillations above sunspot light bridges driven by magnetoacoustic shocks
- Spontaneous Generation of delta-sunspots in Convective Magnetohydrodynamic Simulation of Magnetic Flux Emergence
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- Extending Counter-Streaming Motion from an Active Region Filament to Sunspot Light Bridge
- Heating of the solar chromosphere in a sunspot light bridge by electric currents
- Signatures of magnetic reconnection at the footpoints of fan shape jets on a light bridge driven by photospheric convective motions
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- The chromosphere above a -sunspot in the presence of fan-shaped jets
- The formation of an atypical sunspot light bridge as a result of large-scale flux emergence
- A comparative study of resistivity models for simulations of magnetic reconnection in the solar atmosphere
- Sunspot Light Walls Suppressed by Nearby Brightenings
- Sunspot penumbral filaments intruding into a light bridge and the resultant reconnection jets
- Flux emergence and generation of flare-productive active regions
- Signatures of the impact of flare ejected plasma on the photosphere of a sunspot light-bridge
- Detection of Opposite Magnetic Polarity in a Light Bridge: Its Emergence and Cancellation in association with LB Fan-shaped Jets
- Magnetic connectivity between the light bridge and penumbra in a sunspot
- Long-Term Evolution of Three Light Bridges Developed on the Same Sunspot
- Light Bridges Can Suppress the Formation of Coronal Loops
- Three-minute Sunspot Oscillations Driven by Magnetic Reconnection in a Light Bridge
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- Chromospheric recurrent jets in a sunspot group and their inter-granular origin
- Fan-shaped jet close to a light bridge
- Small-scale Bright Blobs Ejected from a Sunspot Light Bridge
- Investigation of the subsurface structure of a sunspot based on the spatial distribution of oscillation centers inferred from umbral flashes
- The dynamics of AR 12700 in its early emerging phase I: interchange reconnection
- Various Activities above Sunspot Light Bridges in IRIS Observations: Classification and Comparison
- A new view of the solar interface region from the Interface Region Imaging Spectrograph (IRIS)
- Quasiperiodic Slipping Motion of Flare Ribbon Fine Structures Anchored in a Sunspot Light Bridge