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Development of an omnidirectional gamma-ray imaging Compton camera for low-radiation-level environmental monitoring

机译:用于低辐射水平环境监测的全向伽马射线成像康普顿相机的开发

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We have developed an omnidirectional gamma-ray imaging Compton camera for environmental monitoring at low levels of radiation. The camera consisted of only six Csl(Tl) scintillator cubes of 3.5 cm, each of which was readout by super-bialkali photo-multiplier tubes (PMTs). Our camera enables the visualization of the position of gamma-ray sources in all directions (similar to 4 pi sr) over a wide energy range between 300 and 1400 keV. The angular resolution (sigma) was found to be similar to 11 degrees, which was realized using an image-sharpening technique. A high detection efficiency of 18 cps/(mu Sv/h) for 511 keV (1.6 cps/ MBq at 1m) was achieved, indicating the capability of this camera to visualize hotspots in areas with low-radiation-level contamination from the order of mu Sv/h to natural background levels. Our proposed technique can be easily used as a low-radiation-level imaging monitor in radiation control areas, such as medical and accelerator facilities. (c) 2018 The Japan Society of Applied Physics
机译:我们已经开发了全向伽马射线成像康普顿相机,用于低辐射水平的环境监测。相机仅包含六个3.5 cm的Csl(Tl)闪烁体立方体,每个立方体均由超碱性光电倍增管(PMT)读出。我们的摄像机可以在300至1400 keV的宽能量范围内可视化显示各个方向(类似于4 pi sr)的伽马射线源的位置。发现角分辨率(sigma)类似于11度,这是使用图像锐化技术实现的。 511 keV的高检测效率为18 cps /(mu Sv / h)(在1m处为1.6 cps / MBq),这表明该摄像机能够可视化低辐射度污染区域中的热点亩Sv / h到自然背景水平。我们提出的技术可以很容易地用作辐射控制领域(如医疗和加速器设施)中的低辐射水平成像监控器。 (c)2018年日本应用物理学会

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