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Heartbeat of the Sun from Principal Component Analysis and prediction of solar activity on a millenium timescale

机译:基于主成分分析的太阳心跳并预测千年时间上的太阳活动

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摘要

We derive two principal components (PCs) of temporal magnetic field variations over the solar cycles 21–24 from full disk magnetograms covering about 39% of data variance, with σ = 0.67. These PCs are attributed to two main magnetic waves travelling from the opposite hemispheres with close frequencies and increasing phase shift. Using symbolic regeression analysis we also derive mathematical formulae for these waves and calculate their summary curve which we show is linked to solar activity index. Extrapolation of the PCs backward for 800 years reveals the two 350-year grand cycles superimposed on 22 year-cycles with the features showing a remarkable resemblance to sunspot activity reported in the past including the Maunder and Dalton minimum. The summary curve calculated for the next millennium predicts further three grand cycles with the closest grand minimum occurring in the forthcoming cycles 26–27 with the two magnetic field waves separating into the opposite hemispheres leading to strongly reduced solar activity. These grand cycle variations are probed by α − Ω dynamo model with meridional circulation. Dynamo waves are found generated with close frequencies whose interaction leads to beating effects responsible for the grand cycles (350–400 years) superimposed on a standard 22 year cycle. This approach opens a new era in investigation and confident prediction of solar activity on a millenium timescale.
机译:我们从覆盖约39%的数据方差的全磁盘磁图推导出太阳周期21–24上时间磁场变化的两个主要成分(PC),σ= 0.67。这些PC归因于两个主要的电磁波,它们以相反的频率从相对的半球传播,并且相移增加。使用符号回归分析,我们还导出了这些波的数学公式,并计算了它们的汇总曲线,这些曲线与太阳活动指数有关。向后推断PC 800年,发现两个350年的大周期叠加在22年的周期上,其功能与过去报道的黑子活动(包括Maunder和Dalton最小值)显着相似。为下一个千年计算的汇总曲线预测了另外三个大周期,在即将到来的周期26-27中出现了最接近的最小最小值,两个磁场波分离成相对的半球,导致太阳活动大大降低。这些大周期变化是通过具有子午环流的α−Ω发电机模型来探测的。发现发电机波产生的频率很近,它们的相互作用导致大周期(350-400年)的跳动效应叠加在标准的22年周期上。这种方法开启了一个新的纪元,并在千年时间尺度上对太阳活动进行了可靠的预测。

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