The formation of sunspot penumbra. I. Magnetic field properties
Reza Rezaei, Nazaret Bello Gonzalez, Rolf Schlichenmaier

TL;DR
This study investigates the magnetic field properties and flux dynamics involved in the formation of sunspot penumbra, revealing the role of small flux patches and light bridges in the process.
Contribution
It provides detailed observational evidence on magnetic flux increase, flux patch merging, and the role of light bridges during penumbra formation, which was not previously well understood.
Findings
Magnetic flux in the penumbra increases significantly during formation.
Small flux patches contribute to flux increase at a rate of one per minute.
Light bridges play a crucial role in channeling flux and initiating penumbral filaments.
Abstract
We study the formation of a sunspot penumbra in the active region NOAA11024. We simultaneously observed the Stokes parameters of the photospheric iron lines at 1089.6 nm with the TIP and 617.3 nm with the GFPI spectropolarimeters along with broad-band images using G-band and CaIIK filters at the German VTT. The formation of the penumbra is intimately related to the inclined magnetic field. Within 4.5 h observing time, the magnetic flux of the penumbra increases from 9.7E+20 to 18.2E+20 Mx, while the magnetic flux of the umbra remains constant at about 3.8E+20 Mx. Magnetic flux in the immediate surroundings is incorporated into the spot, and new flux is supplied via small flux patches (SFPs), which on average have a flux of 2-3E+18 Mx. The spot's flux increase rate of 4.2E+16 Mx/s corresponds to the merging of one SFP per minute. We also find that during the formation of the spot…
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Taxonomy
TopicsSolar and Space Plasma Dynamics · Stellar, planetary, and galactic studies · Geomagnetism and Paleomagnetism Studies
