A near-IR line of Mn I as a diagnostic tool of the average magnetic energy in the solar photosphere
arXiv:astro-ph/0612389 · doi:10.1086/511951
Abstract
We report on spectropolarimetric observations of a near-IR line of Mn I located at 15262.702 A whose intensity and polarization profiles are very sensitive to the presence of hyperfine structure. A theoretical investigation of the magnetic sensitivity of this line to the magnetic field uncovers several interesting properties. The most important one is that the presence of strong Paschen-Back perturbations due to the hyperfine structure produces an intensity line profile whose shape changes according to the absolute value of the magnetic field strength. A line ratio technique is developed from the intrinsic variations of the line profile. This line ratio technique is applied to spectropolarimetric observations of the quiet solar photosphere in order to explore the probability distribution function of the magnetic field strength. Particular attention is given to the quietest area of the observed field of view, which was encircled by an enhanced network region. A detailed theoretical investigation shows that the inferred distribution yields information on the average magnetic field strength and the spatial scale at which the magnetic field is organized. A first estimation gives ~250 G for the mean field strength and a tentative value of ~0.45" for the spatial scale at which the observed magnetic field is horizontally organized.
42 pages, 17 figures, accepted for publication in the Astrophysical Journal. Figures 1 and 9 are in JPG format
References in corpus (6)
- A Substantial Amount of Hidden Magnetic Energy in the Quiet Sun
- Inter-Network magnetic fields observed with sub-arcsec resolution
- On the validity of the 630 nm Fe I nm lines for the magnetometry of the internetwork quiet Sun
- The distribution of Quiet Sun magnetic field strengths from 0 to 1800 G
- Quiet Sun magnetic fields from simultaneous inversions of visible and infrared spectropolarimetric observations
- The automated classification of astronomical lightcurves using Kohonen self-organising maps
Cited by in corpus (20)
- Quiet Sun internetwork magnetic fields from the inversion of Hinode measurements
- Small-scale solar magnetic fields
- Probing quiet Sun magnetism using MURaM simulations and Hinode/SP results: support for a local dynamo
- Evidence for Quasi-isotropic Magnetic Fields from Hinode Quiet Sun Observations
- Internetwork magnetic field distribution from simultaneous 1.56 micron and 630 nm observations
- Analysis of Quiet-Sun Internetwork Magnetic Fields Based on Linear Polarization Signals
- Wavelength-Diverse Polarization Modulators for Stokes Polarimetry
- Near-IR internetwork spectro-polarimetry at different heliocentric angles
- Inferring the magnetic field vector in the quiet Sun. II. Interpreting results from the inversion of Stokes profiles
- Explanation of the activity sensitivity of Mn I 5394.7 Å
- Inferring the magnetic field vector in the quiet Sun. III. Disk variation of the Stokes profiles and isotropism of the magnetic field
- Quiet Sun Magnetic Field Measurements Based on Lines with Hyperfine Structure
- Modelling the incomplete Paschen-Back effect in the spectra of magnetic Ap stars
- Estimating the longitudinal magnetic field in the chromosphere of quiet-Sun magnetic concentrations
- The circular polarization of the Mn I resonance lines around 280 nm for exploring chromospheric magnetism
- The Magnetic Fields of the Quiet Sun
- A meta-analysis of the magnetic line broadening in the solar atmosphere
- Rubidium abundances in solar metallicity stars
- Spectropolarimetric diagnostics of unresolved magnetic fields in the quiet solar photosphere
- Bayesian Inversion of Stokes Profiles