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Fast ion density measurements using high energy neutral particle analysis in JET

机译:在JET中使用高能中性粒子分析进行快速离子密度测量

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In the JET tokamak the perpendicular velocity distribution function of ICRF heated ions is inferred in the energy range 0.3 ≤ E (MeV) ≤ 1.5 from neutral particle analyser measurements of the emitted high energy atomic flux. The measurements are integrated along a vertical line of sight through the plasma centre, with a finite viewing solid angle. A method is presented to deduce the ICRF heated minority ion density in the plasma centre taking into full consideration the geometry of the measurements. The results are verified against independent measurements of fast ion density and perpendicular energy content, and quantitative agreement is obtained. These results further validate the model of impurity induced neutralization, which was developed to interpret the high energy atomic flux measurements in JET. They give access to fundamental properties of the ICRF heated ion distribution function, and provide improved tools for understanding the behaviour of fast ion populations in forthcoming fusion plasma experiments.
机译:在JET托卡马克中,根据中性粒子分析仪对发射的高能原子通量的测量,推断出ICRF加热离子的垂直速度分布函数在0.3≤E(MeV)≤1.5的能量范围内。这些测量沿着穿过等离子体中心的垂直视线以有限的视角立体角积分。提出了一种在充分考虑测量几何形状的情况下,推导出等离子体中心中ICRF加热的少数离子密度的方法。通过快速离子密度和垂直能量含量的独立测量验证了结果,并获得了定量一致性。这些结果进一步验证了杂质诱导的中和模型,该模型被开发用于解释JET中的高能原子通量测量。它们提供了ICRF加热离子分布功能的基本特性,并提供了改进的工具来了解即将到来的聚变等离子体实验中快速离子种群的行为。

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