Long-term Periodicities in North-South Asymmetry of Solar Activity and Alignments of the Giant Planets
arXiv:2001.05879 · doi:10.1007/s11207-019-1575-7
Abstract
The existence of ~12-year and ~51-year periodicities in the north-south asymmetry of solar activity is well known. However, the origin of these as well as the well-known relatively short periodicities in the north-south asymmetry is not yet clear. Here we have analyzed the combined daily data of sunspot groups reported in Greenwich Photoheliographic Results (GPR) and Debrecen Photoheligraphic Data (DPD) during the period 1874-2017 and the data of the orbital positions (ecliptic longitudes) of the giant planets in ten-day intervals during the period 1600-2099. Our analysis suggests that ~12-year and ~51-year periodicities in the north-south asymmetry of solar activity are the manifestations of the differences in the strengths of ~11-year and ~51-year periodicities of activity in the northern- and southern-hemispheres. During the period 1874-2017 the Morlet wavelet power spectra of the north-south asymmetry of sunspot-group area and the mean absolute difference of the orbital positions of the giant planets are found to be similar. Particularly, there is a suggestion that the ~12-year and ~51-year periodicities in the north-south asymmetry of sunspot-group area occurred during approximately the same times as the corresponding periodicities in the mean absolute difference of the orbital positions of the giant planets. Therefore, we suggest that there could be influence of some specific configurations of the giant planets in the origin of the ~12-year and ~50-year periodicities of the north-south asymmetry of solar activity.
14 pages, 7 figures. to be published in Solar Physics
References in corpus (5)
- Prime orbits for some smooth flows on
- Dynamical characterization of the last prolonged solar minima
- Sunspot Sizes and The Solar Cycle: Analysis Using Kodaikanal White-light Digitized Data
- Will Solar Cycles 25 and 26 Be Weaker than Cycle 24 ?
- Can the long-term hemispheric asymmetry of solar activity result from fluctuations in dynamo parameters?
Cited by in corpus (6)
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- Prediction for the amplitude and second maximum of Solar Cycle 25 and a comparison of the predictions based on strength of polar magnetic field and low latitude sunspot area
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