The energy of waves in the photosphere and lower chromosphere: IV. Inversion results of Ca II H spectra
arXiv:1302.6936 · doi:10.1051/0004-6361/201220463
Abstract
Most static 1D atmosphere models in the quiet Sun predict a rise of the gas temperature at chromospheric layers, but numerical simulations only yield an increase in the brightness temperature. We investigate the thermal structure in the solar chromosphere as derived from an LTE inversion of Ca II H spectra in QS and active regions. We investigate the temperature stratifications on differences between magnetic and field-free regions in the QS, and between QS and ARs. We determine the energy content of individual calcium bright grains (BGs). The rms temperature fluctuations are below 100 K in the photosphere and 200-300 K in the chromosphere. The average temperature stratification in the QS does not exhibit a clear chromospheric temperature rise, opposite to the AR case. We find an energy content of about 7*10E18 J for BGs that repeat with a cadence of about 160 secs. The precursors of BGs have a vertical extent of about 200 km and a horizontal extent of about 1 Mm. The comparison of observed with synthetic NLTE profiles confirms that the solar chromosphere in the QS oscillates between an atmosphere in radiative equilibrium and one with a moderate chromospheric temperature rise. Two-dimensional x-z temperature maps exhibit nearly horizontal canopy-like structures with a few Mm extent around photospheric magnetic field concentrations at a height of about 600 km. The large difference between QS regions and ARs, and the better match of AR and non-LTE reference spectra suggest that magnetic heating processes are more important than commonly assumed. The temperature fluctuations in QS derived by the LTE inversion do not suffice on average to maintain a stationary chromospheric temperature rise. The spatially and vertically resolved information on the temperature structure allows one to investigate in detail the topology and evolution of the thermal structure in the lower solar atmosphere.
16 pages, 16 figures + 1 page Appendix, accepted by A&A
References in corpus (16)
- Non-equilibrium hydrogen ionization in 2D simulations of the solar atmosphere
- Solar Carbon Monoxide, Thermal Profiling, and the Abundances of C, O, and their Isotopes
- 3D Temperature Mapping of Solar Photospheric Fine Structure Using Ca II H Filtergrams
- The horizontal internetwork magnetic field: numerical simulations in comparison to observations with Hinode
- Relation between photospheric magnetic field and chromospheric emission
- The signature of chromospheric heating in Ca II H spectra
- Heating of the magnetic chromosphere: observational constraints from Ca II 8542 spectra
- Time series of high resolution photospheric spectra in a quiet region of the Sun. II. Analysis of the variation of physical quantities of granular structures
- Temporal evolution of the Evershed flow in sunspots. I. Observational characterization of Evershed clouds
- Reversal-free CaIIH profiles: a challenge for solar chromosphere modeling in quiet inter-network
- Observation of a short-lived pattern in the solar chromosphere
- On the fine structure of the quiet solar \Ca II K atmosphere
- The GREGOR Fabry-Pérot Interferometer and its companion the Blue Imaging Solar Spectrometer
- The energy of waves in the photosphere and lower chromosphere: III. Inversion setup for Ca II H spectra in local thermal equilibrium
- Time series of high resolution photospheric spectra in a quiet region of the Sun. I. Analysis of global and spatial variations of line parameters
- The energy of waves in the photosphere and lower chromosphere: II. Intensity statistics
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- Measurements of Photospheric and Chromospheric Magnetic Field Structures Associated with Chromospheric Heating over a Solar Plage Region
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- Heating of the solar chromosphere in a sunspot light bridge by electric currents
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