A meta-analysis of the magnetic line broadening in the solar atmosphere
arXiv:1401.8111 · doi:10.1051/0004-6361/201323166
Abstract
A multi-line Bayesian analysis of the Zeeman broadening in the solar atmosphere is presented. A hierarchical probabilistic model, based on the simple but realistic Milne-Eddington approximation to the solution of the radiative transfer equation, is used to explain the data in the optical and near infrared. Our method makes use of the full line profiles of a more than 500 spectral lines from 4000 to 1.8 m. Although the problem suffers from a strong degeneracy between the magnetic broadening and any other remaining broadening mechanism, the hierarchical model allows to isolate the magnetic contribution with reliability. We obtain the cumulative distribution function for the field strength and use it to put reliable upper limits to the unresolved magnetic field strength in the solar atmosphere. The field is below 160-180 G with 90% probability.
9 pages, 6 figures, accepted for publication in A&A. Fixed references
References in corpus (4)
- A Substantial Amount of Hidden Magnetic Energy in the Quiet Sun
- Hyper-efficient model-independent Bayesian method for the analysis of pulsar timing data
- Coronal loop physical parameters from the analysis of multiple observed transverse oscillations
- A simple model for the distribution of quiet Sun magnetic field strengths