The magnetic field configuration of a solar prominence inferred from spectropolarimetric observations in the He I 10830 A triplet
arXiv:1403.7976 · doi:10.1051/0004-6361/201322903
Abstract
Context: The determination of the magnetic field vector in quiescent solar prominences is possible by interpreting the Hanle and Zeeman effects in spectral lines. However, observational measurements are scarce and lack high spatial resolution. Aims: To determine the magnetic field vector configuration along a quiescent solar prominence by interpreting spectropolarimetric measurements in the He I 1083.0 nm triplet obtained with the Tenerife Infrared Polarimeter installed at the German Vacuum Tower Telescope of the Observatorio del Teide. Methods. The He I 1083.0 nm triplet Stokes profiles are analyzed with an inversion code that takes into account the physics responsible of the polarization signals in this triplet. The results are put into a solar context with the help of extreme ultraviolet observations taken with the Solar Dynamic Observatory and the Solar Terrestrial Relations Observatory satellites. Results: For the most probable magnetic field vector configuration, the analysis depicts a mean field strength of 7 gauss. We do not find local variations in the field strength except that the field is, in average, lower in the prominence body than in the prominence feet, where the field strength reaches 25 gauss. The averaged magnetic field inclination with respect to the local vertical is 77 degrees. The acute angle of the magnetic field vector with the prominence main axis is 24 degrees for the sinistral chirality case and 58 degrees for the dextral chirality. These inferences are in rough agreement with previous results obtained from the analysis of data acquired with lower spatial resolutions.
Accepted in A&A
References in corpus (3)
- Advanced Forward Modeling and Inversion of Stokes Profiles Resulting from the Joint Action of the Hanle and Zeeman Effects
- Influence of atomic polarization and horizontal illumination on the Stokes profiles of the He I 10830 multiplet
- Multi-line Stokes inversion for prominence magnetic-field diagnostics
Cited by in corpus (20)
- The European Solar Telescope
- Radiative diagnostics in the solar photosphere and chromosphere
- MHD simulations of the eruption of coronal flux ropes under coronal streamers
- Spectro-polarimetric Imaging Reveals Helical Magnetic Fields in Solar Prominence Feet
- Quiescent prominence dynamics observed with the Hinode Solar Optical Telescope . II. Prominence Bubble Boundary Layer Characteristics and the Onset of a Coupled Kelvin-Helmholtz Rayleigh-Taylor Instability
- Prominence formation by levitation-condensation at extreme resolutions
- Spectropolarimetric analysis of an active region filament. I. Magnetic and dynamical properties from single component inversions
- Height variation of the vector magnetic field in solar spicules
- Prominence seismology using the period ratio of transverse thread oscillations
- Formation of a Solar Filament by Magnetic Reconnection and Associated Chromospheric Evaporation and Subsequent Coronal Condensation
- Diagnostic potential of the Ca II 8542A line for solar filaments
- Spectropolarimetric analysis of an active region filament. II. Evidence of the limitations of a single component model
- Three-dimensional magnetic field structure of a flux emerging region in the solar atmosphere
- Comparing UV/EUV line parameters and magnetic field in a quiescent prominence with tornadoes
- Inference of magnetic fields in inhomogeneous prominences
- Magnetic Field of Solar Dark Filaments Obtained from He I 10830 Angstrom Spectro-polarimetric Observation
- Ultraviolet Spectropolarimetry: Investigating stellar magnetic field diagnostics
- Multi-wavelength spectropolarimetric observations of AR13724 performed by GRIS
- Spectral Characteristics of the He I D3 Line in a Quiescent Prominence Observed by THEMIS
- Synthetic polarimetric spectra from stellar prominences