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首页> 外文期刊>Journal of instrumentation: an IOP and SISSA journal >Energy-and-pitch-angle-resolved escaping beam ion measurements by Faraday-cup-based fast-ion loss detector in Wendelstein 7-X
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Energy-and-pitch-angle-resolved escaping beam ion measurements by Faraday-cup-based fast-ion loss detector in Wendelstein 7-X

机译:由Wendelstein 7-X的法拉第杯式快速离子损耗探测器的能量和俯仰角度分辨的截止光束离子测量

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摘要

With the objective of understanding the energetic-particle loss mechanism in threedimensional plasmas, a Faraday-cup-based fast-ion loss detector (FILD)was developed and installed in OP1.2b in Wendelstein 7-X (W7-X) as a collaboration between the National Institute for Fusion Science and Max-Planck-Institute for Plasma Physics. The FILD, which consists of double apertures and thin aluminum foils, was based on a magnetic spectrometer using the magnetic field of the fusion device. The double aperture limits the thermal ion, but allows the energetic ion to enter the FILD box. The thin aluminum foils serve as the ion collector. Orbit-following calculations were performed in order to find a suitable position for the FILD. The results indicated that barely co- and counter-going transit ions reached the FILD position mounted on the multi-purpose manipulator installed on W7-X. Moreover, because the injection angle of neutral beams injector installed on W7-X was relatively perpendicular, the target range of pitch angle was set to from 91 degrees to 150 degrees. An energy-and-pitch-angle map was created using a grid calculation code in order to decide on the position/size of aperture and aluminum foil. The grid calculation code indicates the position where the energetic ion would strike on the aluminum foil. Here, the map was used as the basis for designing an aluminum foil pattern with two energies and four pitch angle ranges. Also, note that the lower energy range was designed so that it accommodates a neutral beam injection energy of 55 kV. Measurements of beam ion losses were performed in neutral beam (NB) blip experiments, where concurrent increases and decreases of barely co-going transit beam ion losses due to NB injections were observed. Furthermore, this study validated that the FILD installed on a midplane manipulator probe is capable of probing a range of radii spanning 1.0-1.5 cm, over which the beam ion loss current would vary significantly.
机译:目的地,了解三维等离子体中的能量粒子损失机制,开发了一个法拉第杯的快速离子损失检测器(FILD),并在Wendelstein 7-X(W7-X)中的OP1.2B中作为合作在国家融合科学研究所与Max-Planck研究所之间。由双孔和薄铝箔组成的Fild基于使用融合装置的磁场的磁光谱仪。双孔限制了热离子,但允许能量离子进入Fild盒。薄的铝箔用作离子收集器。进行轨道后进行计算,以便找到Fild的合适位置。结果表明,几乎没有逆转的运输离子达到安装在W7-X上的多功能机械手上的Fild位置。此外,由于安装在W7-X上的中性光束喷射器的注射角度相对垂直,所以俯仰角的目标范围设定为91度至150度。使用网格计算代码创建能量 - 俯仰角图,以便确定孔径和铝箔的位置/尺寸。网格计算代码表示能量离子将在铝箔上撞击的位置。这里,该地图被用作设计具有两个能量和四个桨距角范围的铝箔图案的基础。另外,请注意,设计较低的能量范围使其适用于55 kV的中性光束注入能量。在中性光束(Nb)孔实验中进行光束离子损失的测量,其中观察到通过Nb注射引起的几乎没有勉强共同的过渡束离子损失的同时增加和降低。此外,该研究验证了安装在中间平面式操纵器探针上的Fild能够探测一系列跨越1.0-1.5cm的半径,在该射线离子损耗电流将显着变化。

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  • 作者单位

    National Institute for Fusion Science National Institutes of Natural Sciences 322-6 Oroshi-cho Toki Japan;

    Max-Planck-Institute for Plasma Physics Wendelsteinstra?e 1 17491 Greifswald Germany;

    Max-Planck-Institute for Plasma Physics Wendelsteinstra?e 1 17491 Greifswald Germany;

    Max-Planck-Institute for Plasma Physics Wendelsteinstra?e 1 17491 Greifswald Germany;

    Max-Planck-Institute for Plasma Physics Wendelsteinstra?e 1 17491 Greifswald Germany;

    Institute of Energy and Climate Research Plasma Physics IEK-4 Forschungszentrum 52425 Jülich Germany;

    Institute of Energy and Climate Research Plasma Physics IEK-4 Forschungszentrum 52425 Jülich Germany;

    National Institute for Fusion Science National Institutes of Natural Sciences 322-6 Oroshi-cho Toki Japan;

    National Institute for Fusion Science National Institutes of Natural Sciences 322-6 Oroshi-cho Toki Japan;

    National Institute for Fusion Science National Institutes of Natural Sciences 322-6 Oroshi-cho Toki Japan;

    Max-Planck-Institute for Plasma Physics Wendelsteinstra?e 1 17491 Greifswald Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 仪器、仪表;
  • 关键词

    Particle detectors; Plasma diagnostics - charged-particle spectroscopy; Particle identification methods; Plasma diagnostics - probes;

    机译:粒子探测器;等离子体诊断 - 带电粒子光谱;粒子识别方法;等离子体诊断 - 探针;

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