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Recurrence quantification analysis of two solar cycle indices

机译:两个太阳周期指数的递归量化分析

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Solar activity affects the whole heliosphere and near-Earth space environment. It has been reported in the literature that the mechanism responsible for the solar activity modulation behaves like a low-dimensional chaotic system. Studying these kind of physical systems and, in particular, their temporal evolution requires non-linear analysis methods. To this regard, in this work we apply the recurrence quantification analysis (RQA) to the study of two of the most commonly used solar cycle indicators; i.e. the series of the sunspot number (SSN), and the radio flux 10.7 cm, with the aim of identifying possible dynamical transitions in the system; a task which is particularly suited to the RQA. The outcome of this analysis reveals the presence of large fluctuations of two RQA measures: namely the determinism and the laminarity. In addition, large differences are also seen between the evolution of the RQA measures of the SSN and the radio flux. That suggests the presence of transitions in the dynamics underlying the solar activity. Besides it also shows and quantifies the different nature of these two solar indices. Furthermore, in order to check whether our results are affected by dataartefacts, we have also applied the RQA to both the recently recalibrated SSN series and the previous one, unveiling the main differences between the two data sets. The results are discussed in light of the recent literature on the subject.
机译:太阳活动会影响整个太阳圈和近地空间环境。据文献报道,负责太阳活动调节的机制表现得像低维混沌系统。研究这类物理系统,尤其是它们的时间演化,需要非线性分析方法。为此,在这项工作中,我们将递归量化分析(RQA)应用于研究两个最常用的太阳周期指标;即黑子数(SSN)和无线电通量10.7 cm的序列,目的是识别系统中可能的动态跃迁;一项特别适合RQA的任务。该分析的结果表明,存在两种RQA度量值的较大波动:确定性和分层性。此外,在SSN的RQA度量的演进和无线电通量之间也发现了很大的差异。这表明在太阳活动背后的动力学中存在过渡。此外,它还显示和量化了这两个太阳指数的不同性质。此外,为了检查我们的结果是否受到数据假象的影响,我们还将RQA应用于最近重新校准的SSN系列和上一个序列,揭示了这两个数据集之间的主要差异。根据有关该主题的最新文献讨论了结果。

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