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首页> 外文期刊>Journal of instrumentation: an IOP and SISSA journal >Results and performances of X-ray imaging GEM cameras on FTU (1-D), KSTAR (2-D) and progresses of future experimental set up on W7-X and EAST Facilities
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Results and performances of X-ray imaging GEM cameras on FTU (1-D), KSTAR (2-D) and progresses of future experimental set up on W7-X and EAST Facilities

机译:对FTU(1-D),KSTAR(2-D),KSTAR(2-D)的X射线成像宝石相机的研究结果与对W7-X和East设施的未来实验的进展

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摘要

The triple Gas Electron Multiplier (GEM) is a good candidate for the observation of the plasma volume emitting X-rays photons in the energy band up to 30 keV. The GEM camera system can be simply installed outside the port of a fusion device and it's a micropattern proportional gas detector which consists of an ionization gap, where X-rays photon conversion occurs, three consecutive foils working as amplification stage and finally a dedicated printed circuit board. Its simple experimental setup can be made in different configurations with 1D or 2D imaging possibilities: perpendicular GEM camera allows a 1D emissivity profile reconstruction instead a tangential GEM camera allows a poloidal cross-section image. Moreover, they offer high sensitivity, noise free, optical flexibility (zooming and tilting, magnification 10× up to 30×), high contrast, high dynamic range (6 orders of magnitude) and good time resolution (submillisecond). In this work several experimental results already observed on the Frascati Tokamak Upgrade (FTU) and the Korean Superconducting Tokamak Advanced Research (KSTAR) devices will be presented. The perpendicular installation on FTU allows a 1D radial profile with 128 lines of sight, while thanks to the 2D tangential view of the plasma, the reconstruction of the cross section has been done on KSTAR. Between them there are dynamic and precursors of sawtooth, effects of Edge Localized Mode (ELM) in the core and possible interplay between core and edge in ELMs (high m modes), effects of plasma rotation in the core, dynamic of injected impurities in the outer part of the plasma or also impurity accumulation and localized effects of additional heating. Installation of GEM systems is planned on Wendelstein 7-X (W7-X) and the Experimental Advanced Superconducting Tokamak (EAST) also for their robustness and flexibility X-rays detection in presence of high radiative environments (neutrons and gammas). In future applications on the above mentioned fusion
机译:三重气体电子倍增器(GEM)是观察在能量频带中发射X射线光子的等离子体体积的良好候选者,该等离子体体积高达30keV。宝石摄像机系统可以简单地安装在融合装置的端口外,它是一种微图案比例的气体检测器,它由电离间隙组成,其中X射线光子转换发生,作为放大阶段的三个连续箔片,最后是专用印刷电路木板。其简单的实验设置可以用1D或2D成像可能性的不同配置进行:垂直宝石相机允许1D发射率曲线重建,而是切向宝洁相机允许针状截面图像。此外,它们提供高灵敏度,无噪声,光学灵活性(变焦和倾斜,放大率10×最多30×),高对比度,高动态范围(6级数量级)和良好的时间分辨率(亚硫脲)。在这项工作中,将在FraScati Tokamak升级(FTU)和韩国超导Tokamak高级研究(KSTAR)设备上观察到几种实验结果。 FTU上的垂直安装允许具有128条视线的1D径向轮廓,同时由于等离子体的2D切线视图,在KSTAR上已经完成了横截面的重建。在它们之间存在动态和前体的锯齿,边缘定位模式(ELM)的效果在核心和核心和边缘之间的可能相互作用,在核心中的等离子体旋转的效果,注射杂质的动态等离子体的外部或杂质积累和额外加热的局部效果。在WENDELSTEIN 7-X(W7-X)和实验高级超导TOKAMAK(EAST)上的安装也适用于高辐射环境(中子和伽玛)的鲁棒性和灵活性X射线检测。在未来的上述融合中的应用

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