Characterizing the Umbral Magnetic Knots of -Sunspots
arXiv:2209.09381 · doi:10.3847/1538-4357/ac8eb2
Abstract
Delta ()-spots are active regions (ARs) in which positive and negative umbrae share a penumbra. They are known to be the source of strong flares. We introduce a new quantity, the degree of (Do), to measure the fraction of umbral flux participating in the -configuration and to isolate the dynamics of the magnetic knot, i.e. adjacent umbrae in the -configuration. Using Helioseismic and Magnetic Imager data, we analyze 19 -spots and 11 -spots in detail, and 120 -spots in less detail. We find that -regions are not in a -configuration for the entire time but spend 55 of their observed time as -spots with an average, maximum Do of 72. Compared to -spots, -spots have 2.6 the maximum umbral flux, 1.9 the flux emergence rate, 2.6 the rotation, and 72 the flare energy. On average, the magnetic knots rotate 17 day while the -spots rotate 2 day. Approximately 72 of the magnetic knots present anti-Hale or anti-Joy tilts, contrasting starkly with only 9 of the -spots. A positive correlation exists between and the flare energy emitted by that region. The -spots obey the hemispheric current helicity rule 64 of the time. 84 of the -spots are formed by single flux emergence events and 58 have a quadrupolar magnetic configuration. The -spot characteristics are consistent with the formation mechanism signatures as follows: 42 with the kink instability or Sigma effect, 32 with multi-segment buoyancy, 16 with collisions and two active regions that are unclassified but consistent with a rising O-ring.
Accepted by the Astrophysical Journal. 28 pages, 12 figures
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