Confining and escaping magnetic field lines in tokamaks: Analysis via symplectic maps

Matheus S. Palmero, Iberê L. Caldas
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Abstract

In magnetically confined plasma, it is possible to qualitatively describe the magnetic field configuration via phase spaces of suitable symplectic maps. These phase spaces are of mixed type, where chaos coexists with regular motion, and the complete understanding of the complex dynamical evolution of chaotic trajectories is a challenge that, when overcome, may provide further knowledge into the behaviour of confined fusion plasma. This work presents two numerical investigations into characteristics of mixed phase spaces which model distinct magnetic configurations in tokamaks under different perturbation regimes. The first approach relies on a recurrence-based analysis of ensembles of chaotic trajectories to detect open field lines that widely differ from the average. The second focuses on the transient dynamical behaviour of field lines before they escape the systems. These two methods provide insights into the influence of stickiness and invariant manifolds on the evolution of chaotic trajectories, improving our understanding of how these features affect transport and diffusion properties in mixed phase spaces. These theoretical and numerical approaches may enhance our comprehension of confined plasma behaviour and plasma-wall interactions.

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托卡马克中的约束和逃逸磁力线:通过辛映射进行分析
在磁约束等离子体中,可以通过合适的辛映射的相空间来定性地描述磁场配置。这些相空间是混合型的,其中混沌与规则运动共存,完全理解混沌轨迹的复杂动力学演化是一项挑战,当克服这一挑战时,可能会为受限聚变等离子体的行为提供进一步的知识。这项工作对混合相空间的特性进行了两次数值研究,该混合相空间模拟了不同微扰状态下托卡马克中不同的磁构型。第一种方法依赖于对混沌轨迹集合的基于递推的分析,以检测与平均值大不相同的开放场线。第二个重点是场线在逃离系统之前的瞬态动力学行为。这两种方法深入了解了粘性和不变流形对混沌轨迹演化的影响,提高了我们对这些特征如何影响混合相空间中的传输和扩散特性的理解。这些理论和数值方法可以增强我们对受限等离子体行为和等离子体壁相互作用的理解。
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