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Suprathermal electron driven fishbone instability in the TCV tokamak

机译:Suprathermal电子驱动的钓鱼油在TCV Tokamak中不稳定

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Observations of fishbone oscillations driven by energetic electrons have been reported in several tokamaks, but experimental evidence of the interaction between electrons and the mode has remained limited. In the TCV tokamak, a state-of-the-art multi-channel hard x-ray spectroscopy system equipped with digital pulse detection allows the study of the redistribution of electron cyclotron current drive (ECCD)-created suprathermal electrons at high temporal resolution. For the first time, the response of hard x-ray profiles to the internal kink mode is observed at the frequency of the mode. This work demonstrates the role of suprathermal electrons in destabilizing the fishbone mode and in particular the interaction of trapped electrons with the mode. The mode is destabilized after the ramp-up of suprathermal electrons and then trapped suprathermal electrons preferentially interact with the mode and are expelled during the mode oscillation phase. The experimentally observed mode frequency and rotation direction are in good agreement with the solution of the linear fishbone dispersion relation, where the electron distribution function is modelled using a Fokker-Planck code coupled with a hard x-ray synthetic diagnostic. The frequency and stability predicted by the modeling also agree well with data from an ECCD power scan, as the varying suprathermal electron distribution affects the mode behavior.
机译:在几个托卡马克中报道了由能量电子驱动的鱼底振荡的观察,但电子和模式之间的相互作用的实验证据仍然有限。在TCV Tokamak中,配备数字脉冲检测的最先进的多通道硬X射线光谱系统允许在高时分辨率下研究电子回旋电流驱动器(ECCD)的Suprathermal电子的重新分配。首次,在模式的频率下观察到硬X射线简档对内部扭结模式的响应。这项工作展示了Suprathermal电子在稳定鱼骨模式中的作用,特别是捕获的电子与模式的相互作用。在上班电子的加速后,该模式在加速后稳定,然后被困的上班电子优先与模式相互作用并且在模式振荡阶段期间排出。实验观察到的模式频率和旋转方向与线性钓鱼骨分散关系的溶液吻合良好,其中电子分布函数使用与硬X射线合成诊断耦合的Fokker-Planck代码进行建模。由于不同的Suprathermal电子分布影响模式行为,所需模型预测的频率和稳定性也与来自ECCD功率扫描的数据相吻合。

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