首页> 外文期刊>Plasma physics and controlled fusion >Resolving interactions between ion-cyclotron range of frequencies heating and the scrape-off layer plasma in EAST using divertor probes
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Resolving interactions between ion-cyclotron range of frequencies heating and the scrape-off layer plasma in EAST using divertor probes

机译:使用偏转器探针解决频率加热频率加热和刮削层等离子体之间的相互作用

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摘要

Waves in the ion-cyclotron range of frequencies (ICRF) used for tokamak heating are known to interact strongly with the scrape-off layer (SOL) plasma, potentially limiting ICRF performance. We present the effect of ICRF heating on triple-probe signals in the Experimental Advanced Superconducting Tokamak (EAST) experiment, an advanced superconducting tokamak with two ICRF antennas and 12 MW of ICRF source power in support of high-power and long-pulse operation. Applying time-resolved magnetic mapping to the divertor probe arrays enables detailed sensing of the spatial structure of the SOL modifications. We observe a sharp transition in floating potential from negative to positive over a length scale of a centimeter at a major radius just inboard of the ICRF antenna. The largest changes in floating potential are observed not for probes connecting to the active ICRF antennas but rather to the main limiter or limiters for inactive lower hybrid launchers. Ion saturation current can be greatly reduced for probes mapping just in front of an antenna. Where relevant, comparison with results from the National Spherical Torus Experiment are made. This work will provide insight into sputtering, impurity production and antenna coupling as higher ICRF power levels are attempted on EAST.
机译:已知用于托卡马克加热的离子 - 回旋器范围(ICRF)的波浪与刮削层(溶胶)等离子体强烈相互作用,可能限制ICRF性能。我们介绍了ICRF加热对实验先进超导Tokamak(East)实验中的三探针信号的影响,这是一种先进的超导Tokamak,具有两个ICRF天线和12兆瓦的ICRF源功率,支持大功率和长脉冲操作。将时间分离的磁映射应用于转移器探针阵列,可以详细地感测溶胶修改的空间结构。在ICRF天线内侧的主要半径下,我们观察到浮动潜力从负数到正的峰值过度的尖锐过渡。观察到浮动电位的最大变化不适用于连接到有源ICRF天线的探针,而是用于非活动的较低混合发射器的主限制器或限制器。对于在天线前面的探针映射,可以大大降低离子饱和电流。在相关的情况下,与国家球形圆环实验的结果进行比较。这项工作将提供对溅射的洞察力,杂质生产和天线耦合,因为在东方尝试更高的ICRF功率水平。

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