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首页> 外文期刊>Results in Physics >Optimisation and performance test of fibre-based large-area surface contamination monitor
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Optimisation and performance test of fibre-based large-area surface contamination monitor

机译:基于纤维的大面积表面污染监测仪的优化和性能测试

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A portable large-area radiological contamination surface monitor of advanced design is now under research and development. This monitor, whose detection area is 1200?cm2, is mainly applied for hot-spot searching for nuclear emergency response or facility decommissioning. It consists of a thin plastic scintillation tile and wavelength-shifting fibres coupled to a photomultiplier tube. To improve the detector performance, it is necessary to calculate the collection efficiency of optical photons from the scintillator. The optical photon transportation processes in the plastic scintillator and wavelength-shifting fibres are simulated using the Monte Carlo code Geant4. For further optimisation, experiments with different fibre arrangements are conducted to verify uniformity. In conclusion, an arrangement of ten neighbouring wavelength-shifting fibres, with alternating fibres connected on opposite sides of a organic support for the plastic scintillator presents a better performance for detection.
机译:便携式高级设计的大面积放射性污染表面监测仪目前正在研究和开发中。该监视器的检测面积为1200?cm2,主要用于热点搜索以寻找核应急响应或设施退役。它由薄的塑料闪烁瓦和耦合到光电倍增管的波长转换纤维组成。为了提高检测器性能,有必要计算来自闪烁体的光学光子的收集效率。使用蒙特卡罗编码Geant4模拟了塑料闪烁体和波长偏移光纤中的光子传输过程。为了进一步优化,进行了不同纤维排列的实验以验证均匀性。总而言之,将十个相邻的波长偏移光纤排列在一起,交替的光纤连接在用于塑料闪烁体的有机载体的相对两侧,具有更好的检测性能。

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