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Similarities between extreme events in the solar-terrestrial system by means of nonextensivity

机译:通过非扩展性,太阳地面系统极端事件之间的相似性

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The dynamics of complex systems are founded on universal principles that can be used to describe disparate problems ranging from particle physics to economies of societies. A corollary is that transferring ideas and results from investigators in hitherto disparate areas will cross-fertilize and lead to important new results. In this contribution, we investigate the existence of a universal behavior, if any, in solar flares, magnetic storms, earthquakes and pre-seismic electromagnetic (EM) emissions, extending the work recently published by Balasis et al. (2011a). A common characteristic in the dynamics of the above-mentioned phenomena is that their energy release is basically fragmentary, i.e. the associated events are being composed of elementary building blocks. By analogy with earthquakes, the magnitude of the magnetic storms, solar flares and pre-seismic EM emissions can be appropriately defined. Then the key question we can ask in the frame of complexity is whether the magnitude distribution of earthquakes, magnetic storms, solar flares and pre-fracture EM emissions obeys the same law. We show that these apparently different extreme events, which occur in the solar-terrestrial system, follow the same energy distribution function. The latter was originally derived for earthquake dynamics in the framework of nonextensive Tsallis statistics.
机译:复杂系统的动力学基于通用原理,可用于描述从粒子物理学到社会经济的各种问题。必然的结果是,迄今为止截然不同地区的研究人员转移想法和结果将相互促进,并带来重要的新结果。在这项贡献中,我们调查了太阳耀斑,电磁风暴,地震和地震前电磁(EM)辐射中是否存在普遍行为,从而扩展了Balasis等人最近发表的工作。 (2011a)。上述现象的动力学的共同特征是它们的能量释放基本上是零散的,即,相关的事件由基本的构造块组成。与地震类似,可以适当定义磁暴,太阳耀斑和地震前电磁辐射的大小。然后,在复杂性框架中我们要问的关键问题是地震,电磁风暴,太阳耀斑和断裂前EM排放的大小分布是否遵循相同的定律。我们表明,发生在太阳地面系统中的这些明显不同的极端事件遵循相同的能量分配函数。后者最初是在非广泛的Tsallis统计框架内用于地震动力学的。

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