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Polycapillary lenses for Soft-X-ray transmission: Model, comparison with experiments and potential application for tomographic measurements in tokamaks

机译:用于软X射线透射的多毛细管透镜:模型,与实验的比较以及在托卡马克层析成像测量中的潜在应用

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In tokamaks, plasma emits as a volumetric Soft-X-ray (SXR) source. Emitted X-rays can give very useful information about plasma stability, shape and impurity content. Measuring the Soft X-ray (SXR) radiation ([0.1-20 keV]) of magnetic fusion plasmas is a standard way of accessing valuable information on particle transport and MagnetoHydroDynamic. Generally, like at Tore Supra in France, the analysis is performed with a 2D tomographic system composed of several cameras equipped with detectors like Silicon Barrier Diodes spread in periphery of the tokamak. Unfortunately, the strong constraints imposed by the environment of a tokamak reactor (high neutron fluxes, gamma and hard X-ray emission, high magnetic field and high radiofrequency powers) do not authorize to install in a close vicinity of the machine such detectors. We have thus investigated the possibility of using polycapillary lenses to transport the SXR information to several meters from the plasma, not necessarily in a straight line. The idea is to protect the SXR detector from the entire environment by a proper shielding. Different polycapillary lenses could be used for that purpose and have been tested in collaboration with CELIA (CEA-CNRS) of Bordeaux. Transmission of the order of 20% where observed for the low energetic part of the spectrum (down to 3 keV) while still 10% were observed for the remaining part (from 3 to 10 keV). In parallel a model of polycapillary transmission has been developed and validated against experiment. Results are presented confirming the great potential of polycapillary lenses for SXR transmission in tokamak plasma. Studies of the influence of geometrical parameters like diameter and curvature of the channels, on the photons transmission is also presented.
机译:在托卡马克中,等离子体作为体积软X射线(SXR)源发出。发出的X射线可以提供有关等离子体稳定性,形状和杂质含量的非常有用的信息。测量磁聚变等离子体的软X射线(SXR)辐射([0.1-20 keV])是获取有关粒子传输和磁水动力学的有价值信息的标准方法。通常,像法国的Tore Supra一样,分析是使用2D断层扫描系统进行的,该系统由几台摄像机组成,这些摄像机配备有分布在托卡马克外围的探测器(如硅阻挡二极管)。不幸的是,托卡马克反应堆的环境强加了约束条件(高中子通量,伽马射线和硬X射线发射,高磁场和高射频功率),无法在这种探测器附近安装机器。因此,我们研究了使用多毛细血管镜将SXR信息传输到距血浆几米(不一定是直线)的可能性。这个想法是通过适当的屏蔽来保护SXR检测器不受整个环境的影响。不同的多毛细血管镜可用于此目的,并已与波尔多的CELIA(CEA-CNRS)合作进行了测试。在光谱的低能量部分(低至3 keV)观察到约20%的透射率,而在其余部分(从3到10 keV)观察到约10%的透射率。并行地,已经开发了多毛细血管传输模型并针对实验进行了验证。提出的结果证实了多毛细管晶状体在托卡马克血浆中SXR传输的巨大潜力。还介绍了几何参数(如通道的直径和曲率)对光子传输的影响的研究。

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