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Experimental and theoretical evidence for the chaotic dynamics of complex structures

机译:复杂结构混沌动力学的实验和理论证据

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This paper presents the experimental results on the formation, dynamics and evolution towards chaos of complex space charge structures that emerge in front of a positively biased electrode immersed in a quiescent plasma. In certain experimental conditions, we managed to obtain the so-called multiple double layers (MDLs) with non-concentric configuration. Our experiments show that the interactions between each MDL's constituent entities are held responsible for the complex dynamics and eventually for its transition to chaos through cascades of spatio-temporal sub-harmonic bifurcations. Further, we build a theoretical model based on the fractal approximation (scale relativity theory) in order to reproduce the experimental results (plasma self-structuring and scenario of evolution to chaos). Comparing the experimental results with the theoretical ones, we observe a good correlation between them.
机译:本文介绍了关于复杂空间电荷结构的形成,动力学和演化的实验结果,这些复杂空间电荷结构出现在浸没在静态等离子体中的正偏压电极之前。在某些实验条件下,我们设法获得了具有非同心圆构型的所谓多层(MDL)。我们的实验表明,每个MDL组成实体之间的交互作用都负责复杂的动力学,并最终通过级联的时空次谐波分叉级联向混沌过渡。此外,我们建立在分形近似基础上的理论模型(尺度相对论),以便重现实验结果(等离子体的自结构和演化为混沌的情形)。将实验结果与理论结果进行比较,我们发现它们之间具有良好的相关性。

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