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Energetic particles and multi-scale dynamics in fusion plasmas

机译:融合等离子体中的精力充沛的粒子和多尺度动态

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The role of energetic particles (EPs) in fusion plasmas is unique as they could act as mediators of cross-scale couplings. More specifically,EPs can drive instabilities on the macro- and meso-scales and intermediate between the microscopic thermal ion Larmor radius and the macroscopic plasma equilibrium scale lengths. On one hand, EP driven shear Alfvén waves (SAWs) could provide a nonlinear feedback onto the macro-scale system via the interplay of plasma equilibrium and fusion reactivity profiles. On the other hand, EP-driven instabilities could also excite singular radial mode structures at SAW continuum resonances, which, by mode conversion, yield microscopic fluctuations that may propagate and be absorbed elsewhere, inducing nonlocal behaviors. The above observations thus suggest that a theoretical approach based on advanced kinetic treatment of both EPs and thermal plasma is more appropriate for burning fusion plasmas. Energetic particles, furthermore, may linearly and nonlinearly (via SAWs) excite zonal structures, acting, thereby, as generators of nonlinear equilibria that generally evolve on the same time scale of the underlying fluctuations. These issues are presented within a general theoretical framework, discussing evidence from both numerical simulation results and experimental observations. Analogies of fusion plasmas dynamics with problems in condensed matter physics, nonlinear dynamics, and accelerator physics are also emphasized.
机译:精力粒子(EPS)在融合等离子体中的作用是独一无二的,因为它们可以充当交叉尺度联轴器的介面。更具体地,EPS可以驱动宏观和中学尺度上的不稳定性,并在微观热离子大径半径和宏观等离子体平衡尺度长度之间中间。一方面,EP驱动的剪切Alfvén波(锯)可以通过等离子体平衡和熔融反应性分布的相互作用在宏观级系统上提供非线性反馈。另一方面,EP驱动的不稳定性也可以在SAW连续谐振下激发奇异的径向模式结构,其通过模式转换产生可传播和吸收的微观波动并被吸收,诱导非局部行为。因此,上述观察表明,基于EPS和热等离子体的高级动力学处理的理论方法更适合燃烧融合等离子体。此外,能量颗粒可以线性和非线性地(通过锯)激发区域结构,从而作为非线性均衡的发电机,其通常在底层波动的同一时间尺度上发展。这些问题在一般的理论框架内呈现,讨论了来自数值模拟结果和实验观察的证据。还强调了融合等离子体动态的类别,在凝聚物物理学,非线性动力学和加速物理学中的存在。

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