Large-scale horizontal flows in the solar photosphere V: Possible evidence for the disconnection of bi-polar sunspot groups from their magnetic roots
arXiv:0908.3183 · doi:10.1051/0004-6361/200912422
Abstract
In a recent paper (Svanda et al., 2008, A&A 477, 285) we pointed out that, based on the tracking of Doppler features in the full-disc MDI Dopplergrams, the active regions display two dynamically different regimes. We speculated that this could be a manifestation of the sudden change in the active regions dynamics, caused by the dynamic disconnection of sunspots from their magnetic roots as proposed by Schuessler & Rempel (2005, A&A 441, 337). Here we investigate the dynamic behaviour of the active regions recorded in the high-cadence MDI data over the last solar cycle in order to confirm the predictions in the Schuessler's & Rempel's paper. We find that, after drastic reduction of the sample, which is done to avoid disturbing effects, a large fraction of active regions displays a sudden decrease in the rotation speed, which is compatible with the mechanism of the dynamic disconnection of sunspots from their parental magnetic structures.
11 pages, 9 figures, 1 table; accepted in Astronomy & Astrophysics
References in corpus (6)
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Cited by in corpus (7)
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- Measurements of Solar Differential Rotation Using the Century Long Kodaikanal Sunspot Data
- Sunspot splitting triggering an eruptive flare
- Physical Origin of Differences among various Measures of Solar Meridional Circulation
- Orphan penumbrae: Submerging horizontal fields
- Investigating the relation between sunspots and umbral dots
- Sub-Surface Meridional flow, Vorticity and the life time of Solar Active Regions