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首页> 外文期刊>Fusion Engineering and Design >Advantages of Al based GEM detector aimed at plasma soft - semi hard X-ray radiation imaging
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Advantages of Al based GEM detector aimed at plasma soft - semi hard X-ray radiation imaging

机译:铝基GEM检测器在等离子软-半硬X射线辐射成像方面的优势

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摘要

Development of gaseous detectors, more specifically Gas Electron Multiplier (GEM) based detectors, for application at tokamak plasma radiation monitoring/ imaging in Soft-Semi Hard X-ray (S-SH) region is an ongoing research activity aiming to deliver valuable information on plasma shape, magnetic configuration, non-axisymmetry phenomena of the plasma, etc. Wide radiation range and brightness of plasma radiation impose some restrictions on choice of materials in the detecting chamber, as their interaction with the incident radiation may disrupt original signals.This work proposes usage of aluminum as GEM foils electrodes for the first time. The detector based on these foils was constructed and examined. The operational characteristics and spectral capabilities of such detector were compared with the ones based on the standard (commonly used) copper GEM foils. The laboratory tests were performed using X-ray tube and Fe-55 sources to examine detectors' capabilities in energy-resolved imaging. Additionally, simulations of origin and number of the generated electrons, which determine the detector signal, were performed for Al and Cu GEM foils for a wide energy range of incident photons. The experimental and modelling data demonstrated that Cu based GEM detector produces higher parasitic signal than Al one necessitating total elimination of copper from detector's chamber.
机译:气体检测器的开发,特别是基于气体电子倍增器的检测器的开发,正在用于软-半硬X射线(S-SH)地区的托卡马克等离子辐射监测/成像,是一项正在进行的研究活动,旨在提供有价值的信息。等离子的形状,磁性结构,等离子的非轴对称现象等。等离子辐射的宽辐射范围和亮度对检测室中材料的选择施加了一些限制,因为它们与入射辐射的相互作用可能会破坏原始信号。这项工作提议首次将铝用作GEM箔电极。构建并检查了基于这些箔的检测器。将这种检测器的操作特性和光谱性能与基于标准(常用)铜GEM箔的性能和光谱性能进行了比较。实验室测试是使用X射线管和Fe-55射线源进行的,以检查探测器在能量分辨成像中的能力。另外,对于入射光子的宽能量范围的Al和Cu GEM箔,进行了确定探测器信号的起源电子和生成电子数量的模拟。实验和模型数据表明,基于铜的GEM检测器产生的寄生信号比Al更高,这需要从检测器腔室中完全消除铜。

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