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首页> 外文期刊>Journal of atmospheric and solar-terrestrial physics >A revised forest-fire cellular automaton for the nonlinear dynamics of the Earth's magnetotail
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A revised forest-fire cellular automaton for the nonlinear dynamics of the Earth's magnetotail

机译:修改后的森林火元胞自动机,用于地球磁尾的非线性动力学

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摘要

Recent observations and numerical simulations seem to suggest that the Earth's magnetotail plasma could exist in a near-criticality configuration, and that many features of the magnetospheric response to solar wind changes could be described by avalanche models displaying self-organized criticality. Further evidences of this near-criticality dynamics have been found analyzing the statistical features of the auroral electrojet (AE) index. Here, we present a cellular automation, based on a revised version of the well-known forest-fire model, for the nonlinear dynamics of th Earth's magnetotail. This simple model, chaotically driven using a 1-d coupled map, is able to capture many of the statistical features of the magnetospheric response to solar wind changes. The results, compared with previous analyses of the AE-index features, are discussed in the framework of a near-criticality dynamics of the magnetospheric tail plasma.
机译:最近的观察和数值模拟似乎表明,地球的磁尾等离子体可以以接近临界的状态存在,并且磁层对太阳风变化的许多响应特征可以通过显示自组织临界的雪崩模型来描述。通过分析极光电喷(AE)指数的统计特征,已经找到了这种近临界动力学的进一步证据。在这里,我们基于已知森林火灾模型的修订版,提出了一种用于地球磁尾的非线性动力学的蜂窝自动化。这个简单的模型使用一维耦合图进行混沌驱动,能够捕获磁层对太阳风变化的许多统计特征。与以前的AE指数特征分析相比,该结果在磁层尾等离子体的近临界动力学框架内进行了讨论。

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