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Multi-scale physics mechanisms and spontaneous edge transport bifurcations in fusion plasmas

机译:聚变等离子体中的多尺度物理机制和自发边缘传输分叉

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The magnitude of radial transport in magnetic confinement devices for controlled nuclear fusion suffers spontaneous bifurcations when specific system parameter values are exceeded. Here we show, for the first time, that the correlation length of the plasma potential becomes of the order of the machine size during the edge bifurcation itself, quite unlike the density fluctuations. The mechanism governing the development of this bifurcation, leading to the establishment of an edge transport barrier, is still one of the main scientific conundrums facing the magnetic fusion community after more than twenty years of intense research. The results presented here show the dominant role of long-range correlations when approaching the Low to High confinement edge transition in fusion plasmas. This is in line with the expectation that multi-scale interactions are a crucial ingredient of complex dynamics in many non-equilibrium systems.
机译:当超过特定的系统参数值时,用于受控核聚变的磁性限制装置中径向传输的大小会自发分叉。在这里,我们首次显示,在边缘分叉本身期间,等离子体电势的相关长度变成机器尺寸的数量级,这与密度波动完全不同。经过二十多年的深入研究,控制这种分叉发展的机制,导致建立边缘传输障碍,仍然是磁聚变界面临的主要科学难题之一。此处显示的结果表明,在聚变等离子体中接近低到高限制边缘跃迁时,远距离相关性起主要作用。这符合在许多非平衡系统中多尺度相互作用是复杂动力学的重要组成部分的期望。

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