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RF Sheath-Enhanced Plasma Surface Interaction Studies using Beryllium Optical Emission Spectroscopy in JET ITER-Like Wall

机译:RF护套增强的等离子体表面相互作用研究在喷射浸泡壁中使用铍光学发射光谱学

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摘要

A dedicated study on JET-ILW, deploying two types of ICRH antennas and spectroscopic observation spots at two outboard, beryllium limiters, has provided insight on long-range (up to 6m) RFenhanced plasma-surface interactions (RF-PSI) due to near-antenna electric fields. To aid in the interpretation of optical emission measurements of these effects, the antenna near-fields are computed using the TOPICA code, specifically run for the ITER-like antenna (ILA); similar modelling already existed for the standard JET antennas (A2). In the experiment, both antennas were operated in current drive mode, as RF-PSI tends to be higher in this phasing and at similar power (∼0.5 MW). When sweeping the edge magnetic field pitch angle, peaked RF-PSI effects, in the form of 2-4 fold increase in the local Be source,are consistently measured with the observation spots magnetically connect to regions of TOPICAL-calculated high near-fields, particularly at the near-antenna limiters. It is also found that similar RF-PSI effects are produced by the two types of antenna on similarly distant limiters. Although this mapping of calculated near-fields to enhanced RF-PSI gives only qualitative interpretion of the data, the present dataset is expected to provide a sound experimental basis for emerging RF sheath simulation model validation.
机译:对Jet-ILW的专用研究,在两个舷外,铍限制器下部署两种类型的ICRH天线和光谱观察点,为由于附近的近距离(最多6M)的RFenHACACE - 表面相互作用(RF-PSI)提供了洞察力 - 南娜电场。为了帮助解释这些效果的光学发射测量,使用Topica代码计算天线近场,专门为迭代式天线(ILA)而运行;标准喷射天线(A2)已经存在类似的建模。在实验中,两个天线在电流驱动模式下操作,因为该分阶段趋于更高,并且在类似的功率(〜0.5mW)中趋于更高。当扫过边缘磁场俯仰角时,峰值的RF-PSI效应在局部源的2-4倍的形式中,与观察点磁通到局部计算的高近场区域,特别是在近天线限制器。还发现类似的RF-PSI效应由两种类型的天线产生类似的远处限制器。尽管该映射计算的近场到增强的RF-PSI仅提供了对数据的定性解释,但是目前的数据集预计将为新传出RF鞘仿真模型验证提供声音实验基础。

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