Structure of sunspot penumbral filaments: a remarkable uniformity of properties
Sanjiv Kumar Tiwari, Michiel van Noort, Andreas Lagg, and Sami K., Solanki

TL;DR
This study reveals that sunspot penumbral filaments exhibit remarkable uniformity in their magnetic and velocity properties, supporting a unified magneto-convective model and constraining theoretical simulations.
Contribution
The paper introduces a depth-dependent, spatially coupled 2D inversion method to analyze fine-scale filament structures at the diffraction limit, revealing their uniform physical properties.
Findings
Filaments show similar magnetic field strengths and inclinations across the penumbra.
Upflows are hotter and associated with the filament's inner end, downflows occur at the edges and outer end.
The filament structure aligns with a magneto-convective cell model, explaining previous controversies.
Abstract
The sunspot penumbra comprises numerous thin, radially elongated filaments that are central for heat transport within the penumbra, but whose structure is still not clear. To investigate the fine-scale structure of these filaments, we perform a depth-dependent inversion of spectropolarimetric data of a sunspot very close to solar disk center obtained by Hinode (SOT/SP). We have used a recently developed spatially coupled 2D inversion scheme which allows us to analyze the fine structure of individual penumbral filaments up to the diffraction limit of the telescope. Filaments of different sizes in all parts of penumbra display very similar magnetic field strengths, inclinations and velocity patterns. The similarities allowed us to average all these filaments and to extract the physical properties common to all of them. This average filament shows upflows associated with an upward pointing…
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