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Lithium erosion experiments and modelling under quiescent plasma conditions in DIII-D

机译:DIII-D中静态等离子体条件下的锂腐蚀实验和建模

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摘要

Lithium-sputtering erosion and transport has been measured in the outer divertor of the DIII-D tokamak. The Divertor Materials Evaluation System (DiMES) mechanism places a 2.5 cm lithium spot as a plasma-facing surface in the divertor. Plasma diagnostics and atomic lithium visible spectroscopy are used to measure the lithium erosion yield near the outer strikepoint (OSP) with swept-plasma parameters of electron temperature 5-25 eV and electron density (0.03-1.80) * 10~(19) m~(-3). Solid-phase lithium physical sputtering is measured to be less than 10% (Li/D~+). The yield increases with incident energy. Physical sputtering models confirm measurements of sputtered energy and spatial distributions showing skewed angular distributions when the sample is exposed near the OSP and isotropic angular distributions when the sample is exposed to the private flux region. REDEP/WBC modelling of near-surface impurity transport agrees well with experimental measurements showing sputtered lithium neutral atoms effectively ionized about a centimetre away from the Li-DiMES probe surface. A reduction in lithium physical sputtering by a factor of 4-5 is measured when the lithium surface forms an oxide, consistent with the physical sputtering behaviour of most metal-oxides. Although of less significance than lithium atom transport, there is a modelling/data discrepancy regarding lithium ion transport with, e.g. the data showing more asymmetric ion transport than predicted.
机译:已在DIII-D托卡马克的外部分流器中测量了溅射锂的腐蚀和迁移。分流器材料评估系统(DiMES)机制在分流器中放置一个2.5 cm的锂点作为面向等离子体的表面。等离子体诊断和原子锂可见光谱用于测量扫击等离子体参数为电子温度5-25 eV和电子密度(0.03-1.80)* 10〜(19)m〜的外击点(OSP)附近的锂侵蚀产量(-3)。经测量,固相锂物理溅射小于10%(Li / D〜+)。产率随入射能量而增加。物理溅射模型证实了对溅射能量和空间分布的测量,当样品暴露于OSP附近时显示出倾斜的角度分布,当样品暴露于私有通量区域时显示出各向同性的角度分布。 REDEP / WBC对近表面杂质迁移的建模与实验测量结果非常吻合,表明溅射出的锂中性原子在离Li-DiMES探针表面约一厘米处被有效电离。当锂表面形成氧化物时,测得的锂物理溅射减少了4-5倍,这与大多数金属氧化物的物理溅射行为一致。尽管重要性不如锂原子传输,但关于锂离子的传输,例如使用该数据显示出比预期更多的不对称离子传输。

著录项

  • 来源
    《Nuclear fusion》 |2004年第5期|p. 655-664|共10页
  • 作者单位

    Argonne National Laboratory, Argonne, Illinois, USA;

    University of Wisconsin, Madison, Wisconsin, USA;

    Argonne National Laboratory, Argonne, Illinois, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 原子核物理学、高能物理学;
  • 关键词

  • 入库时间 2022-08-18 00:49:53

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