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Local Observations Of Fast Ion Responses To Energetic Particle Modes Using A Directional Probe In The Compact Helical System (chs)

机译:在紧凑型螺旋系统中使用定向探针对离子对高能粒子模式快速响应的局部观察

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Bursting energetic particle mode (EPM) and fast ion loss induced by the EPM have been observed and experimentally investigated in the Compact Helical System (CHS). A directional probe method was newly applied to neutral beam heated plasmas for fast ion measurement, and it successfully revealed fast ion behaviour inside the last closed flux surface (LCFS) during bursting EPMs. A convective oscillation was observed only inside the LCFS, and drives little loss of fast ions. An anomalous loss of fast ions produced by the phase difference between the fast ion oscillation and the EPM with m = 3 = 2 was observed in the outward shifted configurations. Another anomalous loss of fast ions due to EPMs with m = 2 = 1 was also observed in the inward shifted configuration. The characteristics of the fast-ion-loss flux are different from those observed in the outward shifted configurations, and the loss mechanism seems to be related to a mode mixture between the EPM and a low frequency mode.
机译:在紧凑型螺旋系统(CHS)中已经观察到并实验研究了爆炸的高能粒子模式(EPM)和由EPM引起的快速离子损失。定向探针方法被新应用于中性束加热等离子体,用于快速离子测量,它成功地揭示了在EPM爆炸过程中最后一个封闭通量表面(LCFS)内部的快速离子行为。仅在LCFS内部观察到对流振荡,几乎不引起快速离子的损失。在向外移动的构型中,观察到由快速离子振荡和EPM之间的相位差产生的快速离子异常损失,其中m = 3 / n = 2。在向内移动配置中,还观察到由于EPM导致m = 2 / n = 1引起的另一种快速离子异常损失。快速离子损失通量的特性与在向外移位的配置中观察到的特性不同,并且损耗机制似乎与EPM和低频模式之间的模式混合有关。

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