Formation and plasma circulation of solar prominences
arXiv:1603.05397 · doi:10.3847/0004-637X/823/1/22
Abstract
Solar prominences are long-lived cool and dense plasma curtains in the hot and rarefied outer solar atmosphere or corona. The physical mechanism responsible for their formation and especially for their internal plasma circulation has been uncertain for decades. The observed ubiquitous down flows in quiescent prominences are difficult to interpret as plasma with high conductivity seems to move across horizontal magnetic field lines. Here we present three-dimensional numerical simulations of prominence formation and evolution in an elongated magnetic flux rope as a result of in-situ plasma condensations fueled by continuous plasma evaporation from the solar chromosphere. The prominence is born and maintained in a fragmented, highly dynamic state with continuous reappearance of multiple blobs and thread structures that move mainly downward dragging along mass-loaded field lines. The prominence plasma circulation is characterized by the dynamic balance between the drainage of prominence plasma back to the chromosphere and the formation of prominence plasma via continuous condensation. Plasma evaporates from the chromosphere, condenses into the prominence in the corona, and drains back to the chromosphere, establishing a stable chromosphere-corona plasma cycle. Synthetic images of the modeled prominence with the Solar Dynamics Observatory Atmospheric Imaging Assembly closely resemble actual observations, with many dynamical threads underlying an elliptical coronal cavity.
6 figures
References in corpus (11)
- MPI-AMRVAC for Solar and Astrophysics
- An Exact Integration Scheme for Radiative Cooling in Hydrodynamical Simulations
- Simulating the in situ condensation process of solar prominences
- The discovery of geomagnetically trapped cosmic ray antiprotons
- Rayleigh-Taylor instability in prominences from numerical simulations including partial ionization effects
- The magnetic field configuration of a solar prominence inferred from spectropolarimetric observations in the He I 10830 A triplet
- Morphology and dynamics of solar prominences from 3D MHD simulations
- The Dynamics of Funnel Prominences
- Solar prominences: 'double, double ... boil and bubble'
- Numerical Study on In-Situ Prominence Formation by Radiative Condensation in the Solar Corona
- Toward detailed prominence seismology - I. Computing accurate 2.5D magnetohydrodynamic equilibria
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