Abstract
The time and spatial characteristics of 324 large sunspots (S≥50 millionths of the solar hemisphere) selected from the Abastumani Astrophysical Observatory photoheliogram collection (1950–1990) have been studied. The variations of sunspot angular rotation velocity residuals and oscillations of sunspot tilt angle were analyzed. It has been shown that the differential rotation rate of selected sunspots correlates on average with the solar cycle. The deceleration of differential rotation of large sunspots begins on the ascending arm of the activity curve and ends on the descending arm reaching minimum near the epochs of solar activity maxima. This behavior disappears during the 21st cycle. The amplitudes and periods of sunspot tilt-angle oscillations correlate well with the solar activity cycle. Near the epochs of activity maximum there appear sunspots with large amplitudes and periods showing a significant scatter while the scatter near the minimum is rather low. We also found evidence of phase difference between the sunspot angular rotation velocity and the amplitudes and periods of tilt-angle oscillations.
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Khutsishvili, E., Gigolashvili, M.S. & Kvernadze, T. Differential rotation of the sun determined tracing sunspots and oscillations of sunspot tilt angle. Solar Physics 206, 219–228 (2002). https://doi.org/10.1023/A:1015068629350
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DOI: https://doi.org/10.1023/A:1015068629350