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Anomalous losses of energetic particles in the presence of an oscillating radial electric field in fusion plasmas

机译:在融合等离子体中存在振荡径向电场存在中的高能粒子的异常损失

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The confinement of energetic particles in nuclear fusion devices is studied in the presence of an oscillating radial electric field and an axisymmetric magnetic equilibrium. It is shown that, despite the poloidal and toroidal symmetries, initially integrable orbits turn into chaotic regions that can potentially intercept the wall of the tokamak, leading to particle losses. It is observed that the losses exhibit algebraic time decay different from the expected exponential decay characteristic of radial diffusive transport. A dynamical explanation of this behaviour is presented, within the continuous time random walk theory. The central point of the analysis is based on the fact that, contrary to the radial displacement, the poloidal angle is not bounded and a proper statistical analysis can therefore be made, showing for the first time that energetic particle transport can be super-diffusive in the poloidal direction and characterised by asymmetric poloidal displacement. The connection between poloidal and radial positions ensured by the conservation of the toroidal canonical momentum, implies that energetic particles spend statistically more time in the inner region of the tokamak than in the outer one, which explains the observed algebraic decay. This indicates that energetic particles might be efficiently slowed down by the thermal population before leaving the system. Also, the asymmetric transport reveals a new possible mechanism of self-generation of momentum.
机译:在振动径向电场和轴对称磁平衡的存在下研究了核聚变装置中的能量粒子的限制。结果表明,尽管是个子体和环形对称,最初可集成的轨道变成可能拦截托卡马克墙壁的混沌区域,导致粒子损失。观察到损失表现出代数衰减与径向扩散运输的预期指数衰减特性不同。在连续时间随机步道理论内提出了这种行为的动态解释。分析的中心点是基于以下情况,与径向位移相反,不束缚,因此可以制造各个统计分析,表现为第一次能量粒子运输可以超级扩散面对子方向并具有不对称的单个位移的特征。通过保护环形典型动量的块状和径向位置之间的连接意味着能量粒子在托卡马克的内部区域中花费统计学上的时间而不是在外的内部,这解释了观察到的代数衰减。这表明在离开系统之前,可以通过热量群体有效地减慢精力粒子。此外,非对称传输揭示了一种新的发电机制的动量。

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