arXiv · 1410.8641
Correlation between Decay Rate and Amplitude of Solar Cycles as Revealed from Observations and Dynamo Theory
Abstract
Using different proxies of solar activity, we have studied the following features of solar cycle. (i) A linear correlation between the amplitude of cycle and its decay rate, (ii) a linear correlation between the amplitude of cycle $n$ and the decay rate of cycle $(n - 1)$ and (iii) an anti-correlation between the amplitude of cycle $n$ and the period of cycle $(n - 1)$. Features (ii) and (iii) are very useful because they provide precursors for future cycles. We have reproduced these features using a flux transport dynamo model with stochastic fluctuations in the Babcock-Leighton $α$ effect and in the meridional circulation. Only when we introduce fluctuations in meridional circulation, we are able to reproduce different observed features of solar cycle. We discuss the possible reasons for these correlations.
Explore related subjects
Keep this discovery
Gopal Hazra, Bidya Binay Karak, Dipankar Banerjee, Arnab Rai Choudhuri. 2015-05-07. Correlation between Decay Rate and Amplitude of Solar Cycles as Revealed from Observations and Dynamo Theory. https://doi.org/10.1007/s11207-015-0718-8
Cite the original work for its findings. Save a collection to share your selection of sources.