Stratification of canopy magnetic fields in a plage region. Constraints from a spatially-regularized weak-field approximation method
R. Morosin, J. de la Cruz Rodriguez, G. J. M. Vissers, R. Yadav

TL;DR
This paper introduces a novel spatially-regularized weak-field approximation method to efficiently map and analyze the stratification of magnetic fields in solar plage regions using high-resolution spectropolarimetric data.
Contribution
The paper presents a new regularized WFA technique for rapid, reliable magnetic field mapping across multiple solar atmospheric layers, validated with realistic simulations.
Findings
Magnetic fields in plage regions expand from intergranular lanes to form a canopy.
The lower boundary of the magnetic canopy is around 400-600 km from the photosphere.
Mean magnetic field strength in the lower chromosphere is approximately 658 G.
Abstract
The role of magnetic fields in the chromospheric heating problem remains greatly unconstrained. Most theoretical predictions from numerical models rely on a magnetic configuration, field strength and connectivity whose details have not been well established with observational studies. High-resolution studies of chromospheric magnetic fields in plage are very scarce or non-existent in general. Our aim is to study the stratification of the magnetic field vector in plage regions. We use high-spatial resolution full-Stokes observations acquired with CRISP instrument at the Swedish 1-m Solar Telescope in the Mg I 5173, Na I 5896 and Ca II 8542 lines. We have developed a spatially-regularized weak-field approximation (WFA) method based on the idea of spatial regularization. This method allows for a fast computation of magnetic field maps for an extended field of…
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Taxonomy
TopicsSolar and Space Plasma Dynamics · Geomagnetism and Paleomagnetism Studies · Geophysics and Gravity Measurements
