The solar chromosphere observed at 1 Hz and 0."2 resolution
arXiv:1401.4474 · doi:10.1088/0004-637X/785/2/109
Abstract
We recently reported extremely rapid changes in chromospheric fine structure observed using the IBIS instrument in the red wing of H alpha. Here, we examine data obtained during the same observing run (August 7 2010), of a mature active region NOAA 11094. We analyze more IBIS data including wavelength scans and data from the Solar Dynamics Observatory, all from within a 30 minute interval. Using a slab radiative transfer model, we investigate the physical nature of fibrils in terms of tube-like vs. sheet-like structures. Principal Component Analysis shows that the very rapid H alpha variations in the line wings depend mostly on changes of line width and line shift, but for Ca II 854.2 the variations are dominated by changes in column densities. The tube model must be rejected for a small but significant class of fibrils undergoing very rapid changes. If our wing data arise from the same structures leading to "type II spicules", our analysis calls into question much recent work. Instead the data do not reject the hypothesis that some fibrils are optical superpositions of plasma collected into sheets. We review how Parker's theory of tangential discontinuities naturally leads to plasma collecting into sheets, and show that the sheet picture is falsifiable. Chromospheric fine structures seem to be populated by both tubes and sheets. We assess the merits of spectral imaging versus slit spectroscopy for future studies.
to appear in the Astrophysical Journal
References in corpus (11)
- The Solar Optical Telescope for the Hinode Mission: An Overview
- Observing the Roots of Solar Coronal Heating - in the Chromosphere
- Dynamic Fibrils are driven by Magnetoacoustic Shocks
- Search for high velocities in the disk counterpart of type II spicules
- Statistical properties of the Disk Counterparts of Type II Spicules from simultaneous observations of RBEs in Ca II 8542 and Hα
- Revision of Solar Spicule Classification
- The Role of Type II Spicules in the Upper Solar Atmosphere
- An explanation of the solar transition region
- On the magnetic structure of the solar transition region
- Asymmetries in Coronal Spectral lines and Emission Measure Distribution
- Core and Wing Densities of Asymmetric Coronal Spectral Profiles: Implications for the Mass Supply of the Solar Corona
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- Multiwavelength studies of MHD waves in the solar chromosphere: An overview of recent results
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- The Dynamics of Rapid Redshifted and Blueshifted Excursions in the Solar Halpha line
- Kelvin-Helmholtz instability in solar chromospheric jets: theory and observation
- The Appearance of Spicules in High Resolution Observations of Ca II H and H-alpha
- Ellerman Bombs with Jets: Cause and Effect
- An explanation of remarkable emission line profiles in post-flare coronal rain
- Field topologies in ideal and near ideal magnetohydrodynamics and vortex dynamics
- Systematic variations of macrospicule properties observed by SDO/AIA over half a decade
- High--cadence observations of spicular-type events on the Sun
- New light on an old problem of the cores of solar resonance lines
- Photon mean free paths, scattering, and ever-increasing telescope resolution
- IBIS-A: The IBIS data Archive. High resolution observations of the solar photosphere and chromosphere with contextual data
- The dynamic chromosphere: pushing the boundaries of observations and models
- Numerical simulations of macrospicule jets under energy imbalance conditions in the solar atmosphere
- Chromospheric Rapid Blueshifted Excursions Observed with IBIS and Their Association with Photospheric Magnetic Field Evolution
- Rapid Blue- and Red-shifted Excursions in H line profiles synthesized from realistic 3D MHD simulations
- Numerical simulations of a two-fluid jet at a magnetic null point in a solar arcade
- Searching for signatures of H spicule-like features in the solar transition region