The G-O Rule and Waldmeier Effect in the Variations of the Numbers of Large and Small Sunspot Groups
arXiv:1208.2862 · doi:10.1007/s11207-012-0106-6
Abstract
We have analysed the combined Greenwich and Solar Optical Observing Network (SOON) sunspot group data during the period of 1874-2011 and determined variations in the annual numbers (counts) of the small, large and big sunspot groups (these classifications are made on the basis of the maximum areas of the sunspot groups). We found that the amplitude of an even-numbered cycle of the number of large groups is smaller than that of its immediately following odd-numbered cycle. This is consistent with the well known Gnevyshev and Ohl rule or G-O rule of solar cycles, generally described by using the Zurich sunspot number (Rz). During cycles 12-21 the G-O rule holds good for the variation in the number of small groups also, but it is violated by cycle pair (22, 23) as in the case of Rz. This behaviour of the variations in the small groups is largely responsible for the anomalous behaviour of Rz in cycle pair (22, 23). It is also found that the amplitude of an odd-numbered cycle of the number of small groups is larger than that of its immediately following even-numbered cycle. This can be called as `reverse G-O rule'. In the case of the number of the big groups, both cycle pairs (12, 13) and (22, 23) violated the G-O rule. In many cycles the positions of the peaks of the small, large, and big groups are different and considerably differ with respect to the corresponding positions of the Rz peaks. In the case of cycle 23, the corresponding cycles of the small and large groups are largely symmetric/less asymmetric (Waldmeier effect is weak/absent) with their maxima taking place two years later than that of Rz. The corresponding cycle of the big groups is more asymmetric (strong Waldmeier effect) with its maximum epoch taking place at the same time as that of Rz.
13 pages, 5 figures, 1 table, accepted by Solar Physics
References in corpus (6)
- Solar Cycle Prediction
- Time Distributions of Large and Small Sunspot Groups Over Four Solar Cycles
- Prime orbits for some smooth flows on
- Multi-timescale Solar Cycles and the Possible Implications
- The amplitude of sunspot minimum as a favorable precursor for the prediction of the amplitude of the next solar maximum and the limit of the Waldmeier effect
- Solar cycle variations in the growth and decay of sunspot groups
Cited by in corpus (12)
- Solar cycle prediction
- Sunspot Sizes and The Solar Cycle: Analysis Using Kodaikanal White-light Digitized Data
- Will Solar Cycles 25 and 26 Be Weaker than Cycle 24 ?
- North-south asymmetry in small and large sunspot group activity and violation of even-odd solar cycle rule
- Principal component analysis of sunspot cycle shape
- A Comparison of Solar Cycle Variations in the Equatorial Rotation Rates of the Sun's Subsurface, Surface, Corona, and Sunspot Groups
- Temporal evolutions and quasi-periodic variations present in the sunspot number and group sunspot area data measured at Kodaikanal Observatory for solar cycles 14 to 24
- North--South Asymmetry in Solar Activity and Solar Cycle Prediction, IV: Prediction for Lengths of Upcoming Solar Cycles
- One Possible Reason for Double-Peaked Maxima in Solar Cycles: Is a Second Maximum of Solar Cycle 24 Coming?
- Comparison of Latitude Distribution and Evolution of Even and Odd Sunspot Cycles
- Comparison of the shape and temporal evolution of even and odd solar cycles
- Long-term temporal variations in the areas of sunspot groups