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Measurement of 3D plasma response to external magnetic perturbations in the presence of a rotating external kink

机译:在存在外部旋转扭结的情况下测量3D等离子体对外部磁扰动的响应

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摘要

The detailed measurements of the 3D plasma response to applied external magnetic perturbations in the presence of a rotating external kink are presented, and compared with the predictions of a single-helicity linear model of kink mode dynamics. The modular control coils of the High Beta Tokamak-Extended Pulse (HBT-EP) device are used to apply resonant m = 3/1 magnetic perturbations to wall-stabilized tokamak plasmas with a pre-existing rotating 3/1 kink mode. The plasma response is measured in high-resolution with the extensive magnetic diagnostic set of the HBT-EP device. The spatial structures of both the naturally rotating kink mode and the externally driven response are independently measured and observed to be identical, while the temporal dynamics are consistent with the independent evolution and superposition of the two modes. This leads to the observation of a characteristic change in 3D field dynamics as a function of the applied field amplitude. This amplitude dependence is found to be different for poloidal and radial fields. The measured 3D response is compared to and shown to be consistent with the predictions of the linear single-helicity model in the high-dissipation regime, as reported previously [M. E. Mauel, Nucl. Fusion 45, 285 (2005)].
机译:提出了在旋转的外部扭结存在下对施加的外部磁扰动的3D等离子体响应的详细测量结果,并将其与扭结模式动力学的单螺旋线性模型的预测进行了比较。高Beta托卡马克扩展脉冲(HBT-EP)设备的模块化控制线圈用于将m / n = 3/1的共振磁扰动施加到具有预先存在的旋转3/1扭结模式的壁稳定托卡马克等离子体。使用HBT-EP设备的广泛的磁诊断装置可以高分辨率测量等离子体响应。自然旋转的扭结模式和外部驱动的响应的空间结构都是独立测量的,并且观察到是相同的,而时间动力学与两种模式的独立演化和叠加是一致的。这导致观察到的3D场动力学特性变化是所施加场振幅的函数。发现该振幅依赖性对于极场和径向场是不同的。如先前所报道,将所测得的3D响应与高耗散状态下线性单螺旋模型的预测结果进行比较,并显示出与之一致[M. E. Mauel,Nucl。 Fusion 45,285(2005)]。

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