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ITER visible spectroscopy reference system first mirror plasma cleaning in radio-frequency gas discharge - circuit design and plasma effects

机译:ITER可见光谱参考系统首先镜子等离子体清洗在射频气体放电 - 电路设计和等离子体效果

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The Visible Spectroscopy Reference System (VSRS.55.E6) is going to be one of the first optical diagnostics in the ITER tokamak chamber. For the VSRS diagnostic system, the 100 mm diameter first mirror (FM) located at the front end of the optical system is expected to experience contamination primarily with beryllium and tungsten. Small levels of contamination (on the order of 10 nm) can significantly degrade the optical performance of the mirror. In the VSRS design, a plasma FM cleaning system will be implemented to maintain or restore optical performance. An RF discharge operating in a 30-60 MHz frequency range in an inert gas such as Helium, Argon, or Neon is a candidate technology for the VSRS FM cleaning. In the present report, we analyze the composition of the high-frequency electrical circuit with a plasma load. Characteristics of critical components including the generator, matching unit, cables outside and inside the vacuum vessel, air-to-vacuum interfaces and the electrode are considered. The effect of the plasma cleaning is discussed based on the numbers of ion fluxes and energies obtained in the similar research program. The proposed analysis may be useful for other diagnostic systems using RF plasma for cleaning and connected to long RF-feed and water cooling lines.
机译:可见光谱参考系统(VSRS.55.E6)将是迭代托卡纳克腔室中的第一光学诊断之一。对于VSRS诊断系统,预计位于光学系统前端的100mm直径的第一镜(FM)主要与铍和钨一起体验污染。小污染级别(约10nm)可以显着降低镜子的光学性能。在VSRS设计中,将实现等离子FM清洁系统以维持或恢复光学性能。在惰性气体中的30-60MHz频率范围内运行的RF放电,例如氦气,氩气或霓虹灯是VSRS FM清洗的候选技术。在本报告中,我们通过等离子体负载分析高频电路的组成。考虑了包括发电机,匹配单元,在真空容器外部和内部的电缆,空气 - 真空界面和电极的特性。基于在类似研究程序中获得的离子磁通和能量的数量来讨论等离子体清洁的效果。所提出的分析对于使用RF等离子体的其他诊断系统可用于清洁和连接到长射频进料和水冷却管线。

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