Heating of the magnetized solar chromosphere by partial ionization effects
arXiv:1112.3374 · doi:10.1088/0004-637X/747/2/87
Abstract
In this paper, we study the heating of the magnetized solar chromosphere induced by the large fraction of neutral atoms present in this layer. The presence of neutrals, together with the decrease with height of the collisional coupling, leads to deviations from the classical MHD behavior of the chromospheric plasma. A relative net motion appears between the neutral and ionized components, usually referred to as ambipolar diffusion. The dissipation of currents in the chromosphere is enhanced orders of magnitude due to the action of ambipolar diffusion, as compared to the standard ohmic diffusion. We propose that a significant amount of magnetic energy can be released to the chromosphere just by existing force-free 10--40 G magnetic fields there. As a consequence, we conclude that ambipolar diffusion is an important process that should be included in chromospheric heating models, as it has the potential to rapidly heat the chromosphere. We perform analytical estimations and numerical simulations to prove this idea.
Accepted for publication by The Astrophysical Journal
References in corpus (9)
- Hall magnetohydrodynamics of partially ionized plasmas
- Channeling 5-min photospheric oscillations into the solar outer atmosphere through small-scale vertical magnetic flux tubes
- Non-linear numerical simulations of magneto-acoustic wave propagation in small-scale flux tubes
- Energy flux of Alfven waves in weakly ionized plasma
- Time-dependent hydrogen ionisation in the solar chromosphere. I: Methods and first results
- Waves in the solar photosphere
- Chromospheric magnetic reconnection: Two-fluid simulations of coalescing current loops
- An explanation of the solar transition region
- Generation of electric currents in the chromosphere via neutral-ion drag
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