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Order–chaos–order–chaos transition and evolution of multiple anodic double layers in glow discharge plasma

机译:辉光放电等离子体中多个阳极双层的有序-无序-无序过渡和演化

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Plasma often shows complex dynamic behavior. We present an experimental observation of order–chaos–order–chaos transition in glow discharge plasma. These transitions correspond to the evolution of different stages of a multiple anodic double layer. Multiple anodic double layers were produced in a typical glow discharge condition and associated floating potential oscillations were recorded for monotonous variation of one of the control parameters i.e. the cathode voltage. With a variation in the cathode voltage, the multiple anodic double layers were evolved to different stages. The recorded experimental time series data had been analyzed and quantified using power spectra, phase space trajectories, time-delay reconstructions of state space, Lyapunov exponent and correlation dimensions. The analysis shows that the chaotic behavior corresponds to diffused boundaries between two double layers.
机译:血浆通常表现出复杂的动态行为。我们介绍了辉光放电等离子体中有序-无序-有序-无序过渡的实验观察。这些转变对应于多个阳极双层的不同阶段的演变。在典型的辉光放电条件下产生多个阳极双层,并记录相关的浮动电势振荡,以控制参数之一即阴极电压的单调变化。随着阴极电压的变化,多个阳极双层被发展到不同的阶段。记录的实验时间序列数据已使用功率谱,相空间轨迹,状态空间的时延重构,Lyapunov指数和相关维进行了分析和量化。分析表明,混沌行为对应于两个双层之间的扩散边界。

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