Twisted flux tube emergence from the convection zone to the corona
arXiv:0712.3854 · doi:10.1086/587028
Abstract
3D numerical simulations of a horizontal magnetic flux tube emergence with different twist are carried out in a computational domain spanning the upper layers of the convection zone to the lower corona. We use the Oslo Staggered Code to solve the full MHD equations with non-grey and non-LTE radiative transfer and thermal conduction along the magnetic field lines. The emergence of the magnetic flux tube input at the bottom boundary into a weakly magnetized atmosphere is presented. The photospheric and chromospheric response is described with magnetograms, synthetic images and velocity field distributions. The emergence of a magnetic flux tube into such an atmosphere results in varied atmospheric responses. In the photosphere the granular size increases when the flux tube approaches from below. In the convective overshoot region some 200km above the photosphere adiabatic expansion produces cooling, darker regions with the structure of granulation cells. We also find collapsed granulation in the boundaries of the rising flux tube. Once the flux tube has crossed the photosphere, bright points related with concentrated magnetic field, vorticity, high vertical velocities and heating by compressed material are found at heights up to 500km above the photosphere. At greater heights in the magnetized chromosphere, the rising flux tube produces a cool, magnetized bubble that tends to expel the usual chromospheric oscillations. In addition the rising flux tube dramatically increases the chromospheric scale height, pushing the transition region and corona aside such that the chromosphere extends up to 6Mm above the photosphere. The emergence of magnetic flux tubes through the photosphere to the lower corona is a relatively slow process, taking of order 1 hour.
53 pages,79 figures, Submitted to ApJ
References in corpus (3)
Cited by in corpus (30)
- Flare-productive active regions
- A Contemporary View of Coronal Heating
- Solar surface emerging flux regions: a comparative study of radiative MHD modeling and Hinode SOT observations
- On the prevalence of small-scale twist in the solar chromosphere and transition region
- Decoding the Pre-Eruptive Magnetic Field Configurations of Coronal Mass Ejections
- Formation of a Double-decker Magnetic Flux Rope in the Sigmoidal Solar Active Region 11520
- RH 1.5D: a massively parallel code for multi-level radiative transfer with partial frequency redistribution and Zeeman polarisation
- Coupling from the photosphere to the chromosphere and the corona
- Homologous Helical Jets: Observations by IRIS, SDO and Hinode and Magnetic Modeling with Data-Driven Simulations
- The solar chromosphere at high resolution with IBIS. II. Acoustic shocks in the quiet internetwork and the role of magnetic fields
- Two-dimensional Radiative Magnetohydrodynamic Simulations of Partial Ionization in the Chromosphere. II. Dynamics and Energetics of the Low Solar Atmosphere
- Observational Signatures of Simulated Reconnection Events in the Solar Chromosphere and Transition Region
- Twisted flux tube emergence from the convection zone to the corona II: Later states
- Ion-neutral interactions and non-equilibrium ionization in the solar chromosphere
- 3D MHD modeling of twisted coronal loops
- Clusters of small eruptive flares produced by magnetic reconnection in the sun
- Nonequilibrium ionization and ambipolar diffusion in solar magnetic flux emergence processes
- A Comprehensive Radiative Magnetohydrodynamics Simulation of Active Region Scale Flux Emergence from the Convection Zone to the Corona
- Multi-wavelength high-resolution observations of a small-scale emerging magnetic flux event and the chromospheric and coronal response
- Solar Dynamics, Rotation, Convection and Overshoot
- Data-driven MHD Simulation of the Formation and Initiation of a Large-scale Pre-flare Magnetic Flux Rope in Solar Active Region 12371
- A model for heating the super-hot corona in solar active regions
- Emergence of small-scale magnetic flux in the quiet Sun
- On the Magnetic Nature of an Exploding Granule as Revealed by Sunrise/IMaX
- Modelling magnetic flux emergence in the solar convection zone
- Observational Evidence for Coronal Twisted Flux Rope
- Non-Neutralized Electric Current of Active Regions Explained as a Projection Effect
- Solar Interior
- Evolution of reconnection flux during eruption of magnetic flux ropes
- Emergence of internetwork magnetic fields through the solar atmosphere