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Energetic ion transport by abrupt large-amplitude event induced by negative-ion-based neutral beam injection in the JT-60U

机译:JT-60U中基于负离子的中性束注入引起的突然大振幅事件引起的高能离子传输

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摘要

To investigate energetic ion transport induced by bursting modes in the frequency range of Alfven eigenmodes, which is called abrupt large-amplitude events (ALEs) driven by negative-ion-based neutral beam (N-NB) injection, neutron emission profile measurement and charge exchange (CX) neutral particle (flux) measurement using a natural diamond detector have been performed simultaneously in JT-60U. It is found from the CX neutral particle (flux) measurement that energetic neutral particles in a limited energy range (100-370 keV) are enhanced due to ALEs, and the neutron radial profile is flattened. The change in the energetic ion density profile inferred from these measurements indicates that ALEs expel energetic ions from the core region of the plasma and induce both redistribution and loss of energetic ions. It has been shown that the energy range of transported energetic ions is consistent with a resonance condition between energetic ions and ALEs, and the energetic ion transport results from the resonant interaction between energetic ions and ALEs. Further, a fraction of the energetic ion loss has been quantitatively estimated to be similar to 4%.
机译:研究在Alfven本征模式的频率范围内由爆发模式引起的高能离子传输,这是由基于负离子的中性束(N-NB)注入,中子发射剖面测量和电荷驱动的突然大振幅事件(ALE)在JT-60U中同时使用天然金刚石检测器进行了交换(CX)中性粒子(通量)测量。通过CX中性粒子(通量)测量发现,由于ALE的作用,在有限能量范围(100-370 keV)中的高能中性粒子得以增强,并且中子径向分布变得平坦。从这些测量推断出的高能离子密度分布的变化表明ALE将高能离子从等离子体的核心区域排出,并引起高能离子的重新分布和损失。已经表明,传输的高能离子的能量范围与高能离子和ALE之间的共振条件一​​致,并且高能离子的传输是由高能离子和ALE之间的共振相互作用产生的。此外,已经定量地估计了一部分高能离子损失与4%相似。

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