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Spatial resolved high-energy particle diagnostic system using time-of-flight neutral particle analyzer in Large Helical Device

机译:大型螺旋装置中使用飞行时间中性粒子分析仪的空间分辨高能粒子诊断系统

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摘要

The time-of-flight-type neutral particle analyzer has an ability of horizontal scanning from 40 to 100° of the pitch angle. The information from the spatially resolved energy spectrum gives not only the ion temperature but also the information of the particle confinement and the electric field in plasmas. We have been studying the energy distributions at various magnetic configurations in the neutral beam injection (NBI) plasma. The spatially resolved energy spectra can be observed during long discharges of the NBI plasma by continuous scanning of the neutral particle analyzer. The shape of spectra is almost similar from 44° to 53°. However, the spectra from 55° are strongly varied. They reflect the injection pitch angle of the beam. The pitch angle scanning experiment during the long discharge of NBI plasma has also been made under the reversal of the magnetic field direction. NBI2 becomes counter injected with the reversal. We can easily observe the difference between co- and counter injections of NBI. During the electron cyclotron heating in the low-density plasma for the formation of the internal thermal barrier, large neutral particle increase or decease can be observed. The degree of the increase/decrease depends on the energy and the density. The reason for the variation of the particle flux is that the orbit of the trapped particle changes due to the electric field formed by the strong electron cyclotron heating.
机译:飞行时间型中性粒子分析仪具有从俯仰角的40°到100°进行水平扫描的能力。来自空间分辨能谱的信息不仅提供离子温度,还提供粒子限制和等离子体中电场的信息。我们一直在研究中性束注入(NBI)等离子体中各种磁性配置下的能量分布。通过连续扫描中性粒子分析仪,可以在NBI等离子体长时间放电期间观察到空间分辨的能谱。光谱的形状从44°到53°几乎相似。但是,55°的光谱变化很大。它们反映了光束的注入俯仰角。在磁场方向反转的情况下,还进行了NBI等离子体长时间放电过程中的俯仰角扫描实验。 NBI2与反向相反注入。我们可以轻松观察到NBI共注入和反向注入之间的区别。在低密度等离子体中进行电子回旋加速器加热以形成内部热障时,可以观察到大的中性颗粒增加或减少。增加/减少的程度取决于能量和密度。粒子通量变化的原因是被捕获的粒子的轨道由于强电子回旋加速器加热形成的电场而改变。

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