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First measurements of the ion energy distribution at the divertor strike point during DIII-D disruptions

机译:在DIII-D中断期间,在偏转器冲击点处的离子能量分布的首先测量

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Plasma/wall interaction studies are being carried out using the Divertor Materials Exposure System (DiMES) on DIII-D. The objective of the experiment is to determine the kinetic energy and flux of deuterium ions reaching the divertor target during argon-induced radiative disruptions. The experiment utilizes a special slotted ion analyzer mounted over a Si sample to collect the fast charge-exchange (CX) deuterium neutrals emitted within the recycled cold neutral layer (CNL) which serves as a CX target for the incident ions. A theoretical interpretation of the experiment reveals a strong "forward" pitch-angle dependence in the approaching ion distribution function. The depth distribution of the trapped D in the Si sample was measured using low-energy direct recoil spectroscopy. Comparison with the TRIM code using monoenergetic ions indicated that the best fit to the data was obtained for an ion energy of 100 eV. An estimate of the CNL thickness /spl int/ndl indicates that during disruptions the CNL "cushion" is thick enough to reduce the local ion heat load by /spl sim/30% due to CX refluxing.
机译:等离子体/壁相互作用研究正在使用DIII-D上的转栓材料暴露系统(DIMES)进行。实验的目的是确定在氩气诱导的辐射破坏期间到达倒置器靶位的氘离子的动能和通量。该实验利用安装在一个硅样品收集用作CX目标入射离子再循环冷中性层(CNL)内发出的快速电荷交换(CX)氘中性特殊开槽离子分析仪。实验的理论解释揭示了在接近离子分布函数中的强“向前”俯仰角依赖性。使用低能量直接反冲光谱测量Si样品中被捕获的D的深度分布。使用单齿离子的调整码比较表明,获得了100eV的离子能量的最佳拟合。 CNL厚度/ SPL Int / NDL的估计表明,在破坏期间,由于CX回流,CNL“垫子”足够厚,以通过/ SPL SIM / 30%降低局部离子热负荷。

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