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A gamma beam profile imager for ELI-NP Gamma Beam System

机译:用于ELI-NP伽玛射线系统的伽玛射线轮廓成像仪

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The Gamma Beam System of ELI-Nuclear Physics is a high brilliance monochromatic gamma source based on the inverse Compton interaction between an intense high power laser and a bright electron beam with tunable energy. The source, currently being assembled in Magurele (Romania), is designed to provide a beam with tunable average energy ranging from 0.2 to 19.5 MeV, rms energy bandwidth down to 0.5%and flux of about108photons/s. The system includes a set of detectors for the diagnostic and complete characterization of the gamma beam. To evaluate the spatial distribution of the beam a gamma beam profile imager is required. For this purpose, a detector based on a scintillator target coupled to a CCD camera was designed and a prototype was tested at INFN-Ferrara laboratories. A set of analytical calculations and Monte Carlo simulations were carried out to optimize the imager design and evaluate the performance expected with ELI-NP gamma beam. In this work the design of the imager is described in detail, as well as the simulation tools used and the results obtained. The simulation parameters were tuned and cross-checked with the experimental measurements carried out on the assembled prototype using the beam from an x-ray tube.
机译:ELI-核物理的伽玛射线系统是一种高亮度单色伽玛射线源,它基于强高功率激光与具有可调能量的明亮电子束之间的逆康普顿相互作用。该光源目前在罗马尼亚的Magurele组装,旨在为光束提供可调的平均能量,范围从0.2到19.5 MeV,均方根能量带宽低至0.5%,通量约为108光子/秒。该系统包括一组检测器,用于诊断和完整表征伽马射线。为了评估光束的空间分布,需要使用伽马光束轮廓成像仪。为此,设计了一种基于与CCD摄像机耦合的闪烁器目标的探测器,并在INFN-Ferrara实验室测试了原型。进行了一组分析计算和蒙特卡洛模拟,以优化成像器设计并评估ELI-NP伽马射线预期的性能。在这项工作中,将详细介绍成像器的设计以及使用的仿真工具和获得的结果。使用来自X射线管的光束,对仿真参数进行了调整,并与在组装好的原型上进行的实验测量结果进行了交叉核对。

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