Phase diversity restoration of sunspot images
Восстановление изображений солнечных пятен методом фазового разнообразия
2005-01-26
SCID: 54.1/nmjcdtvc
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G-band bright pointslocal correlation trackingphase diversity restorationradial outflowsunspot moat
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Abstract (AI)
Two time series, taken simultaneously in the G-band and in white-light, and corrected for telescope aberrations and turbulence perturbations using the method of phase diversity, are employed to study the motions of granules and G-band bright points (GBPs) in the moat of an old regular sunspot. Local correlation tracking and feature tracking have been utilized for this purpose. A large-scale radial outflow with a mean velocity of 0.51 km s-1 has been measured in the sunspot moat. Centres of diverging horizontal motions, identified with families of granules formed by repeatedly splitting granules, move away from the sunspot. Most of the GBPs in the moat also move outwards through radially orientated “channels” (confined between the borders of adjacent families) with velocities comparable to those of the adjacent granules. However, 6% of the GBPs move faster (>1.4 km s-1) than the neighbouring granules. GBPs in the moat are not regularly distributed but they are less frequent on its solar centre side.
Key Findings
1
A large-scale radial outflow was detected in the sunspot moat, with a mean velocity of 0.51 km s−1.
2
Approximately 6% of G-band bright points move faster than adjacent granules, exceeding 1.4 km s−1; bright points are also less frequent on the moat’s solar-center side.
3
Granule families formed through repeated splitting exhibit diverging horizontal motions whose centers move away from the sunspot.
4
Most G-band bright points move outward through radially oriented channels at velocities comparable to neighboring granules.
5
Phase diversity correction of simultaneous G-band and white-light image sequences enabled analysis of granule and G-band bright-point motions in a sunspot moat.
Research Object
Granules and G-band bright points (GBPs) in the moat of an old regular sunspot
Research Subject
Horizontal motions, radial outflow, spatial distribution, and velocity differences of granules and GBPs in the sunspot moat
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2005-01-26
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