Effects of unresolved magnetic field on Fe I 617.3 and 630.2 nm line shapes
arXiv:1212.2190 · doi:10.1088/0004-637X/763/2/144
Abstract
The contribution of the quiet Sun to solar irradiance variability, due either to changes of the solar effective temperature or to the presence of unresolved magnetic field, is still poorly understood. In this study we investigate spectral line diagnostics that are sensitive to both temperature variations and the presence of small scale unresolved magnetic features in these areas of the solar atmosphere. Specifically we study the dependence on the magnetic flux density of three parameters describing the shape of two magnetically sensitive FeI lines, at 630.2 nm and 617.3 nm, namely the line core intensity (IC), full width at half maximum (FWHM), and the equivalent width (EQW). To this aim we analyze observations of active region NOAA 11172, acquired with IBIS at the Dunn Solar Telescope, as well as results from numerical synthesis. Our results show that IC is sensitive to both temperature and magnetic flux density variations, FWHM is mostly affected by magnetic field changes, and EQW is mostly sensitive to temperature. Variations of a few percent of the measured line parameters are found in observational data that was spatially degraded to represent quiet-Sun, disk-centre, medium resolution observations. It is therefore possible to disentangle magnetic from pure thermodynamic effects by comparison of temporal variations of the EQW and the FWHM of either the two FeI lines.
Paper accepted by ApJ. Content differs from ApJ version for few sentencences
References in corpus (10)
- The Solar Optical Telescope for the Hinode Mission: An Overview
- The solar chromosphere at high resolution with IBIS. I. New insights from the Ca II 854.2 nm line
- Spectral Line Selection for HMI: A Comparison of Fe I 6173 and Ni I 6768
- Sun-as-a-Star Spectrum Variations 1974-2006
- On the validity of the 630 nm Fe I nm lines for the magnetometry of the internetwork quiet Sun
- Relationships between magnetic foot points and G-band bright structures
- Imaging Spectropolarimetry with IBIS: Evolution of Bright Points in the Quiet Sun
- Three-dimensional non-LTE radiative transfer effects in Fe I lines I. Flux sheet and flux tube geometries
- On the role of magnetic fields in abundance determinations
- Photometric properties of resolved and unresolved magnetic elements
Cited by in corpus (6)
- Comparison of physical properties of quiet and active regions through the analysis of MHD simulations of the solar photosphere
- The correlation of synthetic UV color vs Mg II index along the solar cycle
- Understanding Sun-as-a-star variability of solar Balmer lines
- IBIS-A: The IBIS data Archive. High resolution observations of the solar photosphere and chromosphere with contextual data
- Understanding the Fe I Line Measurements Returned by the Helioseismic and Magnetic Imager
- Towards Spectroscopically Detecting the Global Latitudinal Temperature Variation on the Solar Surface