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RADI—A RF source size-scaling experiment towards the ITER neutral beam negative ion source

机译:RADI-针对ITER中性束负离子源的RF源尺寸缩放实验

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IPP Garching is currently developing a negative hydrogen ion RF source for the ITER neutral beam system. The source demonstrated already current densities in excess of the ITER requirements (>200 A/m~2 D~-) at the required source pressure and electron/ion ratio, but with only small extraction area and limited pulse length. A new test facility (RADI) went recently into operation for the demonstration of the required (plasma) homogeneity of a large RF source and the modular driver concept. The source with the dimension of 0.8 m x 0.76 m has roughly the width and half the height of the ITER source; its modular driver concept will allow an easy extrapolation in only one direction to the full size ITER source. The RF power supply consists of two 180 kW, 1 MHz RF generators capable of 30 s pulses. A dummy grid matches the conductance of the ITER source. Full size extraction is presently not possible due to the lack of an insulator, a large size extraction system and a beam dump. The main parameters determining the performance of this "half-size" source are the negative ion and electron density in front of the grid as well as the homogeneity of their profiles across the grid. Those will be measured by optical emission and cavity ring down spectroscopy, by Langmuir probes and laser detachment. These methods have been calibrated to the extracted current densities achieved at the smaller source test facilities at IPP for similar source parameters. However, in order to get some information about the possible ion and electron currents, local single aperture extraction with a Faraday cup system is planned.
机译:IPP Garching目前正在为ITER中性束系统开发负氢离子射频源。在所需的源压力和电子/离子比下,该离子源已经显示出超过ITER要求的电流密度(> 200 A / m〜2 D〜-),但提取面积小且脉冲长度有限。新的测试设施(RADI)最近投入运营,用于证明大型RF源所需的(等离子体)均匀性和模块化驱动器概念。尺寸为0.8 m x 0.76 m的放射源大约具有ITER放射源的宽度和高度的一半。它的模块化驱动器概念仅允许在一个方向上轻松地将其推向完整尺寸的ITER源。射频电源由两个能够产生30 s脉冲的180 kW,1 MHz射频发生器组成。虚拟栅格与ITER源的电导匹配。由于缺少绝缘体,大型提取系统和光束收集器,目前无法进行全尺寸提取。决定此“半尺寸”离子源性能的主要参数是栅极前面的负离子和电子密度,以及它们在整个栅极上的分布均匀性。那些将通过光发射和腔衰荡光谱,Langmuir探针和激光分离来测量。这些方法已根据在IPP较小源测试设备上针对相似源参数获得的提取电流密度进行了校准。但是,为了获得有关可能的离子和电子电流的一些信息,计划使用法拉第杯系统进行局部单孔提取。

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