The solar chromosphere at high resolution with IBIS. II. Acoustic shocks in the quiet internetwork and the role of magnetic fields
arXiv:0807.4966 · doi:10.1051/0004-6361:200810694
Abstract
(Abridged) Aims: We characterize the dynamics of the quiet inter-network chromosphere by studying the occurrence of acoustic shocks and their relation with the concomitant photospheric structure and dynamics. Methods: We analyze a comprehensive data set that includes high resolution chromospheric and photospheric spectra obtained with the IBIS imaging spectrometer in two quiet-Sun regions. This is complemented by high-resolution sequences of MDI magnetograms of the same targets. From the chromospheric spectra we identify the spatio-temporal occurrence of the acoustic shocks. We compare it with the photospheric dynamics by means of both Fourier and wavelet analysis, and study the influence of magnetic structures. Results: Mid-chromospheric shocks occur as a response to underlying powerful photospheric motions at periodicities nearing the acoustic cut-off, consistent with 1-D hydrodynamical modeling. However, their spatial distribution within the supergranular cells is highly dependent on the local magnetic topology, both at the network and internetwork scale. Large portions of the internetwork regions undergo very few shocks, as "shadowed" by the horizontal component of the magnetic field. The latter is betrayed by the presence of chromospheric fibrils, observed in the core of the CaII line as slanted structures with distinct dynamical properties. The shadow mechanism appears to operate also on the very small scales of inter-network magnetic elements, and provides for a very pervasive influence of the magnetic field even in the quietest region analyzed.
18 pages, 16 figures (includes 1 Appendix). Accepted by A&A (16 October 2008). Minor changes from v1 after referee's comments. Higher quality figures available at http://www.arcetri.astro.it/~gcauzzi/papers_astroph/ibis.shocks.accepted.pdf
References in corpus (11)
- Twisted flux tube emergence from the convection zone to the corona
- The solar chromosphere at high resolution with IBIS. I. New insights from the Ca II 854.2 nm line
- Solar Atmospheric Oscillations and the Chromospheric Magnetic Topology
- Dynamics of the Solar Magnetic Network. II. Heating the Magnetized Chromosphere
- Hinode Observations of Magnetic Elements in Internetwork Areas
- Relation between photospheric magnetic field and chromospheric emission
- The signature of chromospheric heating in Ca II H spectra
- Reversal-free CaIIH profiles: a challenge for solar chromosphere modeling in quiet inter-network
- On the fine structure of the quiet solar \Ca II K atmosphere
- Fourier analysis of active-region plage
- Small-scale structure and dynamics of the lower solar atmosphere
Cited by in corpus (11)
- Multiwavelength studies of MHD waves in the solar chromosphere: An overview of recent results
- Why Is Non-thermal Line Broadening of Spectral Lines in The Lower Transition Region of the Sun Independent of Spatial Resolution?
- Heating of the magnetic chromosphere: observational constraints from Ca II 8542 spectra
- Conditions for Photospherically Driven Alfvenic Oscillations to Heat the Solar Chromosphere by Pedersen Current Dissipation
- MHD wave propagation from the sub-photosphere to the corona in an arcade-shaped magnetic field with a null point
- Magnetoacoustic Waves in a Stratified Atmosphere with a Magnetic Null Point
- The energy of waves in the photosphere and lower chromosphere: III. Inversion setup for Ca II H spectra in local thermal equilibrium
- The energy of waves in the photosphere and lower chromosphere: II. Intensity statistics
- Three-dimensional hydrodynamical CO5BOLD model atmospheres of red giant stars VI. First chromosphere model of a late-type giant
- On the inversion of the scattering polarization and the Hanle effect signals in the hydrogen Lyman- line
- Chromospheric Rapid Blueshifted Excursions Observed with IBIS and Their Association with Photospheric Magnetic Field Evolution