Solar Magnetic Carpet II: Coronal Interactions of Small-Scale Magnetic Fields
arXiv:1211.3924 · doi:10.1007/s11207-011-9924-1
Abstract
This paper is the second in a series of studies working towards constructing a realistic, evolving, non-potential coronal model for the solar magnetic carpet. In the present study, the interaction of two magnetic elements is considered. Our objectives are to study magnetic energy build up, storage and dissipation as a result of emergence, cancellation, and flyby of these magnetic elements. In the future these interactions will be the basic building blocks of more complicated simulations involving hundreds of elements. Each interaction is simulated in the presence of an overlying uniform magnetic field, which lies at various orientations with respect to the evolving magnetic elements. For these three small-scale interactions, the free energy stored in the field at the end of the simulation ranges from ergs, while the total energy dissipated ranges from ergs. For all cases, a stronger overlying field results in higher energy storage and dissipation. For the cancellation and emergence simulations, motion perpendicular to the overlying field results in the highest values. For the flyby simulations, motion parallel to the overlying field gives the highest values. In all cases, the free energy built up is sufficient to explain small-scale phenomena such as X-ray bright points or nanoflares. In addition, if scaled for the correct number of magnetic elements for the volume considered, the energy continually dissipated provides a significant fraction of the quiet Sun coronal heating budget.
References in corpus (7)
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- Recurrent solar jets in active regions
- Modeling the Dispersal of an Active Region: Quantifying Energy Input into the Corona
- A new view of quiet-Sun topology from Hinode/SOT
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Cited by in corpus (4)
- Homologous Helical Jets: Observations by IRIS, SDO and Hinode and Magnetic Modeling with Data-Driven Simulations
- H-alpha features with hot onsets. II. A contrail fibril
- Solar Magnetic Carpet III: Coronal Modelling of Synthetic Magnetograms
- Sustained heating of the chromosphere and transition region over a sunspot light bridge