Variation in solar differential rotation and activity in the period 1964-2016 determined by the Kanzelhöhe data set
arXiv:2204.07396 · doi:10.1051/0004-6361/202140509
Abstract
We determined the differential rotation (DR) parameters and (corresponding to the equatorial rotation velocity and the gradient of the solar DR) by tracing sunspot groups in sunspot drawings of the Kanzelhöhe Observatory for Solar and Environmental Research (KSO; 1964-2008, for solar cycles (SC) 20-23) and KSO white-light images (2009-2016, for SC 24). We used different statistical methods and approaches to analyse cycle related variations, solar cycle phase-related variations and long-term variations of the DR. and show statistically significant periodic variability. The changes in related to solar cycle phase are in accordance with previously reported theoretical and experimental results (higher during solar minimum, lower during the maximum of activity), while changes in differ from the theoretical predictions as we observe more negative values of , that is, a more pronounced DR during activity maximum. The main result of this paper for the long-term variations in is the detection of a phase shift between the activity flip (in the 1970s) and the equatorial rotation velocity flip (in the early 1990s). During this time period both and activity show a secular decreasing trend, indicating their correlation. Therefore, the theoretical model fails in the phase-shift time period that occurs after the modern Gleissberg maximum, while in the time period thereafter (after the 1990s), theoretical and experimental results are consistent. The long-term variations in in general yield an anticorrelation of and activity, as a rise of is observed during the entire time period (1964-2016) we analysed, during which activity decreased. We study for the first time the variation in solar DR and activity based on 53 years of KSO data. Our results agree well with the results related to the solar cycle phase from corona observations.
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